ERA75deg Dec1999-Nov2000 Control 1999 12 [time][LEV][latitude][longitude]
ERA75deg Dec1999-Nov2000 Control 1999 12\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec1999-Nov2000 Control 2000 01 [time][LEV][latitude][longitude]
ERA75deg Dec1999-Nov2000 Control 2000 01\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec1999-Nov2000 Control 2000 02 [time][LEV][latitude][longitude]
ERA75deg Dec1999-Nov2000 Control 2000 02\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec1999-Nov2000 Control 2000 03 [time][LEV][latitude][longitude]
ERA75deg Dec1999-Nov2000 Control 2000 03\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec1999-Nov2000 Control 2000 04 [time][LEV][latitude][longitude]
ERA75deg Dec1999-Nov2000 Control 2000 04\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec1999-Nov2000 Control 2000 05 [time][LEV][latitude][longitude]
ERA75deg Dec1999-Nov2000 Control 2000 05\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec1999-Nov2000 Control 2000 06 [time][LEV][latitude][longitude]
ERA75deg Dec1999-Nov2000 Control 2000 06\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec1999-Nov2000 Control 2000 07 [time][LEV][latitude][longitude]
ERA75deg Dec1999-Nov2000 Control 2000 07\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec1999-Nov2000 Control 2000 08 [time][LEV][latitude][longitude]
ERA75deg Dec1999-Nov2000 Control 2000 08\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec1999-Nov2000 Control 2000 09 [time][LEV][latitude][longitude]
ERA75deg Dec1999-Nov2000 Control 2000 09\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec1999-Nov2000 Control 2000 10 [time][LEV][latitude][longitude]
ERA75deg Dec1999-Nov2000 Control 2000 10\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec1999-Nov2000 Control 2000 11 [time][LEV][latitude][longitude]
ERA75deg Dec1999-Nov2000 Control 2000 11\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec1999-Nov2000 Insitu 1999 12\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec1999-Nov2000 Insitu 2000 01\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec1999-Nov2000 Insitu 2000 02\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec1999-Nov2000 Insitu 2000 03\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec1999-Nov2000 Insitu 2000 04\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec1999-Nov2000 Insitu 2000 05\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec1999-Nov2000 Insitu 2000 06\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec1999-Nov2000 Insitu 2000 07\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec1999-Nov2000 Insitu 2000 08\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec1999-Nov2000 Insitu 2000 09\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec1999-Nov2000 Insitu 2000 10\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec1999-Nov2000 Insitu 2000 11\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec1999-Nov2000 Remote 1999 12\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec1999-Nov2000 Remote 2000 01\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec1999-Nov2000 Remote 2000 02\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec1999-Nov2000 Remote 2000 03\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec1999-Nov2000 Remote 2000 04\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec1999-Nov2000 Remote 2000 05\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec1999-Nov2000 Remote 2000 06\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec1999-Nov2000 Remote 2000 07\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec1999-Nov2000 Remote 2000 08\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec1999-Nov2000 Remote 2000 09\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec1999-Nov2000 Remote 2000 10\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec1999-Nov2000 Remote 2000 11\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec2004-Nov2005 Control 2004 12 [time][LEV][latitude][longitude]
ERA75deg Dec2004-Nov2005 Control 2004 12\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec2004-Nov2005 Control 2005 01 [time][LEV][latitude][longitude]
ERA75deg Dec2004-Nov2005 Control 2005 01\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec2004-Nov2005 Control 2005 02 [time][LEV][latitude][longitude]
ERA75deg Dec2004-Nov2005 Control 2005 02\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec2004-Nov2005 Control 2005 03 [time][LEV][latitude][longitude]
ERA75deg Dec2004-Nov2005 Control 2005 03\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec2004-Nov2005 Control 2005 04 [time][LEV][latitude][longitude]
ERA75deg Dec2004-Nov2005 Control 2005 04\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec2004-Nov2005 Control 2005 05 [time][LEV][latitude][longitude]
ERA75deg Dec2004-Nov2005 Control 2005 05\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec2004-Nov2005 Control 2005 06 [time][LEV][latitude][longitude]
ERA75deg Dec2004-Nov2005 Control 2005 06\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec2004-Nov2005 Control 2005 07 [time][LEV][latitude][longitude]
ERA75deg Dec2004-Nov2005 Control 2005 07\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec2004-Nov2005 Control 2005 08 [time][LEV][latitude][longitude]
ERA75deg Dec2004-Nov2005 Control 2005 08\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec2004-Nov2005 Control 2005 09 [time][LEV][latitude][longitude]
ERA75deg Dec2004-Nov2005 Control 2005 09\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec2004-Nov2005 Control 2005 10 [time][LEV][latitude][longitude]
ERA75deg Dec2004-Nov2005 Control 2005 10\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec2004-Nov2005 Control 2005 11 [time][LEV][latitude][longitude]
ERA75deg Dec2004-Nov2005 Control 2005 11\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec2004-Nov2005 Insitu 2004 12\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec2004-Nov2005 Insitu 2005 01\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec2004-Nov2005 Insitu 2005 02\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec2004-Nov2005 Insitu 2005 03\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec2004-Nov2005 Insitu 2005 04\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec2004-Nov2005 Insitu 2005 05\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec2004-Nov2005 Insitu 2005 06\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec2004-Nov2005 Insitu 2005 07\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec2004-Nov2005 Insitu 2005 08\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec2004-Nov2005 Insitu 2005 09\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec2004-Nov2005 Insitu 2005 10\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec2004-Nov2005 Insitu 2005 11\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec2004-Nov2005 Remote 2004 12\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec2004-Nov2005 Remote 2005 01\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec2004-Nov2005 Remote 2005 02\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec2004-Nov2005 Remote 2005 03\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec2004-Nov2005 Remote 2005 04\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec2004-Nov2005 Remote 2005 05\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec2004-Nov2005 Remote 2005 06\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec2004-Nov2005 Remote 2005 07\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec2004-Nov2005 Remote 2005 08\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec2004-Nov2005 Remote 2005 09\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec2004-Nov2005 Remote 2005 10\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
ERA75deg Dec2004-Nov2005 Remote 2005 11\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\nu (zonal wind)\nv (meridional wind)\nair (temperature)\nqv (mixing ratio of water vapor)\nqc (cloud water mixing ratio)\nqi (cloud ice mixing ratio)\nw (omega)\nthv (virtual potential temperature)\ncld (cloud amount)\nq1b (heating rate due to vertical mixing)\nq2b (moistening due to vertical mixing)\nq1l (heating rate due to large-scale condensation)\nq2l (moistening due to large-scale condensation)\nq1cd (heating rate due to deep convection)\nq2cd (moistening due to deep convection)\nq1cs (heating rate due to shallow convection)\nq2cs (moistening due to shallow convection)\nq1cm (heating rate due to shallow convection)\nq2cm (moistening due to shallow convection)\nalw (longwave radiative heating rate)\nasw (shortwave radiative heating rate)\nh (geopotential height)\n
Model output CESM Assimilation assm globe atm 01p1 atm2d
Model output CESM Assimilation assm globe atm 01p1 atm2d\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][latitude][longitude]):\naerod_v (total aerosol optical depth in visible band [1])\natmeint (vertically integrated total atmospheric energy [j/m2])\ncldhgh (vertically-integrated high cloud [fraction])\ncldlow (vertically-integrated low cloud [fraction])\ncldmed (vertically-integrated med cloud [fraction])\ncldtot (vertically-integrated total cloud [fraction])\nflds (downwelling longwave flux at surface [w/m2])\nfldsc (clearsky downwelling longwave flux at surface [w/m2])\nflns (net longwave flux at surface [w/m2])\nflnsc (clearsky net longwave flux at surfac [w/m2])\nflnt (net longwave flux at top of model [w/m2])\nflntc (clearsky net longwave flux at top of model [w/m2])\nflut (upwelling longwave flux at top of model [w/m2])\nflutc (clearsky upwelling longwave flux at top of model [w/m2])\nfreqsh (fractional occurance of shallow convection [fraction])\nfreqzm (fractional occurance of zm convection [fraction])\nfsds (downwelling solar flux at surface [w/m2])\nfsdsc (clearsky downwelling solar flux at surface [w/m2])\nfsdtoa (downwelling solar flux at top of atmosphere [w/m2])\nfsns (net solar flux at surface [w/m2])\nfsnsc (clearsky net solar flux at surface [w/m2])\nfsnt (net solar flux at top of model [w/m2])\nfsntc (clearsky net solar flux at top of model [w/m2])\nfsntoa (net solar flux at top of atmosphere [w/m2])\nfsntoac (clearsky net solar flux at top of atmosphere [w/m2])\nfsutoa (upwelling solar flux at top of atmosphere [w/m2])\nicefrac (fraction of sfc area covered by sea-ice [fraction])\n... (49 more variables)\n
Model output CESM Assimilation assm globe atm 01p1 cmfdq
Model output CESM Assimilation assm globe atm 01p1 cmfdq\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfdq (qv tendency - shallow convection [kg/kg/s])\n
Model output CESM Assimilation assm globe atm 01p1 cmfdqr
Model output CESM Assimilation assm globe atm 01p1 cmfdqr\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfdqr (q tendency - shallow convection rainout [kg/kg/s])\n
Model output CESM Assimilation assm globe atm 01p1 cmfdt
Model output CESM Assimilation assm globe atm 01p1 cmfdt\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfdt (t tendency - shallow convection [k/s])\n
Model output CESM Assimilation assm globe atm 01p1 cmfmc
Model output CESM Assimilation assm globe atm 01p1 cmfmc\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfmc (moist shallow convection mass flux [kg/kg])\n
Model output CESM Assimilation assm globe atm 01p1 cmfmcdz
Model output CESM Assimilation assm globe atm 01p1 cmfmcdz\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfmcdzm (convection mass flux from zm deep [kg/m2/s])\n
Model output CESM Assimilation assm globe atm 01p2 atm2d
Model output CESM Assimilation assm globe atm 01p2 atm2d\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][latitude][longitude]):\naerod_v (total aerosol optical depth in visible band [1])\natmeint (vertically integrated total atmospheric energy [j/m2])\ncldhgh (vertically-integrated high cloud [fraction])\ncldlow (vertically-integrated low cloud [fraction])\ncldmed (vertically-integrated med cloud [fraction])\ncldtot (vertically-integrated total cloud [fraction])\nflds (downwelling longwave flux at surface [w/m2])\nfldsc (clearsky downwelling longwave flux at surface [w/m2])\nflns (net longwave flux at surface [w/m2])\nflnsc (clearsky net longwave flux at surfac [w/m2])\nflnt (net longwave flux at top of model [w/m2])\nflntc (clearsky net longwave flux at top of model [w/m2])\nflut (upwelling longwave flux at top of model [w/m2])\nflutc (clearsky upwelling longwave flux at top of model [w/m2])\nfreqsh (fractional occurance of shallow convection [fraction])\nfreqzm (fractional occurance of zm convection [fraction])\nfsds (downwelling solar flux at surface [w/m2])\nfsdsc (clearsky downwelling solar flux at surface [w/m2])\nfsdtoa (downwelling solar flux at top of atmosphere [w/m2])\nfsns (net solar flux at surface [w/m2])\nfsnsc (clearsky net solar flux at surface [w/m2])\nfsnt (net solar flux at top of model [w/m2])\nfsntc (clearsky net solar flux at top of model [w/m2])\nfsntoa (net solar flux at top of atmosphere [w/m2])\nfsntoac (clearsky net solar flux at top of atmosphere [w/m2])\nfsutoa (upwelling solar flux at top of atmosphere [w/m2])\nicefrac (fraction of sfc area covered by sea-ice [fraction])\n... (49 more variables)\n
Model output CESM Assimilation assm globe atm 01p2 cmfdq
Model output CESM Assimilation assm globe atm 01p2 cmfdq\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfdq (qv tendency - shallow convection [kg/kg/s])\n
Model output CESM Assimilation assm globe atm 01p2 cmfdqr
Model output CESM Assimilation assm globe atm 01p2 cmfdqr\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfdqr (q tendency - shallow convection rainout [kg/kg/s])\n
Model output CESM Assimilation assm globe atm 01p2 cmfdt
Model output CESM Assimilation assm globe atm 01p2 cmfdt\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfdt (t tendency - shallow convection [k/s])\n
Model output CESM Assimilation assm globe atm 01p2 cmfmc
Model output CESM Assimilation assm globe atm 01p2 cmfmc\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfmc (moist shallow convection mass flux [kg/kg])\n
Model output CESM Assimilation assm globe atm 01p2 cmfmcdz
Model output CESM Assimilation assm globe atm 01p2 cmfmcdz\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfmcdzm (convection mass flux from zm deep [kg/m2/s])\n
Model output CESM Assimilation assm globe atm 01p3 atm2d
Model output CESM Assimilation assm globe atm 01p3 atm2d\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][latitude][longitude]):\naerod_v (total aerosol optical depth in visible band [1])\natmeint (vertically integrated total atmospheric energy [j/m2])\ncldhgh (vertically-integrated high cloud [fraction])\ncldlow (vertically-integrated low cloud [fraction])\ncldmed (vertically-integrated med cloud [fraction])\ncldtot (vertically-integrated total cloud [fraction])\nflds (downwelling longwave flux at surface [w/m2])\nfldsc (clearsky downwelling longwave flux at surface [w/m2])\nflns (net longwave flux at surface [w/m2])\nflnsc (clearsky net longwave flux at surfac [w/m2])\nflnt (net longwave flux at top of model [w/m2])\nflntc (clearsky net longwave flux at top of model [w/m2])\nflut (upwelling longwave flux at top of model [w/m2])\nflutc (clearsky upwelling longwave flux at top of model [w/m2])\nfreqsh (fractional occurance of shallow convection [fraction])\nfreqzm (fractional occurance of zm convection [fraction])\nfsds (downwelling solar flux at surface [w/m2])\nfsdsc (clearsky downwelling solar flux at surface [w/m2])\nfsdtoa (downwelling solar flux at top of atmosphere [w/m2])\nfsns (net solar flux at surface [w/m2])\nfsnsc (clearsky net solar flux at surface [w/m2])\nfsnt (net solar flux at top of model [w/m2])\nfsntc (clearsky net solar flux at top of model [w/m2])\nfsntoa (net solar flux at top of atmosphere [w/m2])\nfsntoac (clearsky net solar flux at top of atmosphere [w/m2])\nfsutoa (upwelling solar flux at top of atmosphere [w/m2])\nicefrac (fraction of sfc area covered by sea-ice [fraction])\n... (49 more variables)\n
Model output CESM Assimilation assm globe atm 01p3 cmfdq
Model output CESM Assimilation assm globe atm 01p3 cmfdq\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfdq (qv tendency - shallow convection [kg/kg/s])\n
Model output CESM Assimilation assm globe atm 01p3 cmfdqr
Model output CESM Assimilation assm globe atm 01p3 cmfdqr\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfdqr (q tendency - shallow convection rainout [kg/kg/s])\n
Model output CESM Assimilation assm globe atm 01p3 cmfdt
Model output CESM Assimilation assm globe atm 01p3 cmfdt\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfdt (t tendency - shallow convection [k/s])\n
Model output CESM Assimilation assm globe atm 01p3 cmfmc
Model output CESM Assimilation assm globe atm 01p3 cmfmc\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfmc (moist shallow convection mass flux [kg/kg])\n
Model output CESM Assimilation assm globe atm 01p3 cmfmcdz
Model output CESM Assimilation assm globe atm 01p3 cmfmcdz\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfmcdzm (convection mass flux from zm deep [kg/m2/s])\n
Model output CESM Assimilation assm globe atm 01p4 atm2d
Model output CESM Assimilation assm globe atm 01p4 atm2d\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][latitude][longitude]):\naerod_v (total aerosol optical depth in visible band [1])\natmeint (vertically integrated total atmospheric energy [j/m2])\ncldhgh (vertically-integrated high cloud [fraction])\ncldlow (vertically-integrated low cloud [fraction])\ncldmed (vertically-integrated med cloud [fraction])\ncldtot (vertically-integrated total cloud [fraction])\nflds (downwelling longwave flux at surface [w/m2])\nfldsc (clearsky downwelling longwave flux at surface [w/m2])\nflns (net longwave flux at surface [w/m2])\nflnsc (clearsky net longwave flux at surfac [w/m2])\nflnt (net longwave flux at top of model [w/m2])\nflntc (clearsky net longwave flux at top of model [w/m2])\nflut (upwelling longwave flux at top of model [w/m2])\nflutc (clearsky upwelling longwave flux at top of model [w/m2])\nfreqsh (fractional occurance of shallow convection [fraction])\nfreqzm (fractional occurance of zm convection [fraction])\nfsds (downwelling solar flux at surface [w/m2])\nfsdsc (clearsky downwelling solar flux at surface [w/m2])\nfsdtoa (downwelling solar flux at top of atmosphere [w/m2])\nfsns (net solar flux at surface [w/m2])\nfsnsc (clearsky net solar flux at surface [w/m2])\nfsnt (net solar flux at top of model [w/m2])\nfsntc (clearsky net solar flux at top of model [w/m2])\nfsntoa (net solar flux at top of atmosphere [w/m2])\nfsntoac (clearsky net solar flux at top of atmosphere [w/m2])\nfsutoa (upwelling solar flux at top of atmosphere [w/m2])\nicefrac (fraction of sfc area covered by sea-ice [fraction])\n... (49 more variables)\n
Model output CESM Assimilation assm globe atm 01p4 cmfdq
Model output CESM Assimilation assm globe atm 01p4 cmfdq\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfdq (qv tendency - shallow convection [kg/kg/s])\n
Model output CESM Assimilation assm globe atm 01p4 cmfdqr
Model output CESM Assimilation assm globe atm 01p4 cmfdqr\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfdqr (q tendency - shallow convection rainout [kg/kg/s])\n
Model output CESM Assimilation assm globe atm 01p4 cmfdt
Model output CESM Assimilation assm globe atm 01p4 cmfdt\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfdt (t tendency - shallow convection [k/s])\n
Model output CESM Assimilation assm globe atm 01p4 cmfmc
Model output CESM Assimilation assm globe atm 01p4 cmfmc\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfmc (moist shallow convection mass flux [kg/kg])\n
Model output CESM Assimilation assm globe atm 01p4 cmfmcdz
Model output CESM Assimilation assm globe atm 01p4 cmfmcdz\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfmcdzm (convection mass flux from zm deep [kg/m2/s])\n
Model output CESM Assimilation assm globe atm 01p5 atm2d
Model output CESM Assimilation assm globe atm 01p5 atm2d\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][latitude][longitude]):\naerod_v (total aerosol optical depth in visible band [1])\natmeint (vertically integrated total atmospheric energy [j/m2])\ncldhgh (vertically-integrated high cloud [fraction])\ncldlow (vertically-integrated low cloud [fraction])\ncldmed (vertically-integrated med cloud [fraction])\ncldtot (vertically-integrated total cloud [fraction])\nflds (downwelling longwave flux at surface [w/m2])\nfldsc (clearsky downwelling longwave flux at surface [w/m2])\nflns (net longwave flux at surface [w/m2])\nflnsc (clearsky net longwave flux at surfac [w/m2])\nflnt (net longwave flux at top of model [w/m2])\nflntc (clearsky net longwave flux at top of model [w/m2])\nflut (upwelling longwave flux at top of model [w/m2])\nflutc (clearsky upwelling longwave flux at top of model [w/m2])\nfreqsh (fractional occurance of shallow convection [fraction])\nfreqzm (fractional occurance of zm convection [fraction])\nfsds (downwelling solar flux at surface [w/m2])\nfsdsc (clearsky downwelling solar flux at surface [w/m2])\nfsdtoa (downwelling solar flux at top of atmosphere [w/m2])\nfsns (net solar flux at surface [w/m2])\nfsnsc (clearsky net solar flux at surface [w/m2])\nfsnt (net solar flux at top of model [w/m2])\nfsntc (clearsky net solar flux at top of model [w/m2])\nfsntoa (net solar flux at top of atmosphere [w/m2])\nfsntoac (clearsky net solar flux at top of atmosphere [w/m2])\nfsutoa (upwelling solar flux at top of atmosphere [w/m2])\nicefrac (fraction of sfc area covered by sea-ice [fraction])\n... (49 more variables)\n
Model output CESM Assimilation assm globe atm 01p5 cmfdq
Model output CESM Assimilation assm globe atm 01p5 cmfdq\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfdq (qv tendency - shallow convection [kg/kg/s])\n
Model output CESM Assimilation assm globe atm 01p5 cmfdqr
Model output CESM Assimilation assm globe atm 01p5 cmfdqr\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfdqr (q tendency - shallow convection rainout [kg/kg/s])\n
Model output CESM Assimilation assm globe atm 01p5 cmfdt
Model output CESM Assimilation assm globe atm 01p5 cmfdt\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfdt (t tendency - shallow convection [k/s])\n
Model output CESM Assimilation assm globe atm 01p5 cmfmc
Model output CESM Assimilation assm globe atm 01p5 cmfmc\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfmc (moist shallow convection mass flux [kg/kg])\n
Model output CESM Assimilation assm globe atm 01p5 cmfmcdz
Model output CESM Assimilation assm globe atm 01p5 cmfmcdz\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfmcdzm (convection mass flux from zm deep [kg/m2/s])\n
Model output CESM Assimilation assm globe atm 02p1 atm2d
Model output CESM Assimilation assm globe atm 02p1 atm2d\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][latitude][longitude]):\naerod_v (total aerosol optical depth in visible band [1])\natmeint (vertically integrated total atmospheric energy [j/m2])\ncldhgh (vertically-integrated high cloud [fraction])\ncldlow (vertically-integrated low cloud [fraction])\ncldmed (vertically-integrated med cloud [fraction])\ncldtot (vertically-integrated total cloud [fraction])\nflds (downwelling longwave flux at surface [w/m2])\nfldsc (clearsky downwelling longwave flux at surface [w/m2])\nflns (net longwave flux at surface [w/m2])\nflnsc (clearsky net longwave flux at surfac [w/m2])\nflnt (net longwave flux at top of model [w/m2])\nflntc (clearsky net longwave flux at top of model [w/m2])\nflut (upwelling longwave flux at top of model [w/m2])\nflutc (clearsky upwelling longwave flux at top of model [w/m2])\nfreqsh (fractional occurance of shallow convection [fraction])\nfreqzm (fractional occurance of zm convection [fraction])\nfsds (downwelling solar flux at surface [w/m2])\nfsdsc (clearsky downwelling solar flux at surface [w/m2])\nfsdtoa (downwelling solar flux at top of atmosphere [w/m2])\nfsns (net solar flux at surface [w/m2])\nfsnsc (clearsky net solar flux at surface [w/m2])\nfsnt (net solar flux at top of model [w/m2])\nfsntc (clearsky net solar flux at top of model [w/m2])\nfsntoa (net solar flux at top of atmosphere [w/m2])\nfsntoac (clearsky net solar flux at top of atmosphere [w/m2])\nfsutoa (upwelling solar flux at top of atmosphere [w/m2])\nicefrac (fraction of sfc area covered by sea-ice [fraction])\n... (49 more variables)\n
Model output CESM Assimilation assm globe atm 02p1 cmfdq
Model output CESM Assimilation assm globe atm 02p1 cmfdq\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfdq (qv tendency - shallow convection [kg/kg/s])\n
Model output CESM Assimilation assm globe atm 02p1 cmfdqr
Model output CESM Assimilation assm globe atm 02p1 cmfdqr\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfdqr (q tendency - shallow convection rainout [kg/kg/s])\n
Model output CESM Assimilation assm globe atm 02p1 cmfdt
Model output CESM Assimilation assm globe atm 02p1 cmfdt\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfdt (t tendency - shallow convection [k/s])\n
Model output CESM Assimilation assm globe atm 02p1 cmfmc
Model output CESM Assimilation assm globe atm 02p1 cmfmc\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfmc (moist shallow convection mass flux [kg/kg])\n
Model output CESM Assimilation assm globe atm 02p1 cmfmcdz
Model output CESM Assimilation assm globe atm 02p1 cmfmcdz\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfmcdzm (convection mass flux from zm deep [kg/m2/s])\n
Model output CESM Assimilation assm globe atm 02p2 atm2d
Model output CESM Assimilation assm globe atm 02p2 atm2d\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][latitude][longitude]):\naerod_v (total aerosol optical depth in visible band [1])\natmeint (vertically integrated total atmospheric energy [j/m2])\ncldhgh (vertically-integrated high cloud [fraction])\ncldlow (vertically-integrated low cloud [fraction])\ncldmed (vertically-integrated med cloud [fraction])\ncldtot (vertically-integrated total cloud [fraction])\nflds (downwelling longwave flux at surface [w/m2])\nfldsc (clearsky downwelling longwave flux at surface [w/m2])\nflns (net longwave flux at surface [w/m2])\nflnsc (clearsky net longwave flux at surfac [w/m2])\nflnt (net longwave flux at top of model [w/m2])\nflntc (clearsky net longwave flux at top of model [w/m2])\nflut (upwelling longwave flux at top of model [w/m2])\nflutc (clearsky upwelling longwave flux at top of model [w/m2])\nfreqsh (fractional occurance of shallow convection [fraction])\nfreqzm (fractional occurance of zm convection [fraction])\nfsds (downwelling solar flux at surface [w/m2])\nfsdsc (clearsky downwelling solar flux at surface [w/m2])\nfsdtoa (downwelling solar flux at top of atmosphere [w/m2])\nfsns (net solar flux at surface [w/m2])\nfsnsc (clearsky net solar flux at surface [w/m2])\nfsnt (net solar flux at top of model [w/m2])\nfsntc (clearsky net solar flux at top of model [w/m2])\nfsntoa (net solar flux at top of atmosphere [w/m2])\nfsntoac (clearsky net solar flux at top of atmosphere [w/m2])\nfsutoa (upwelling solar flux at top of atmosphere [w/m2])\nicefrac (fraction of sfc area covered by sea-ice [fraction])\n... (49 more variables)\n
Model output CESM Assimilation assm globe atm 02p2 cmfdq
Model output CESM Assimilation assm globe atm 02p2 cmfdq\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfdq (qv tendency - shallow convection [kg/kg/s])\n
Model output CESM Assimilation assm globe atm 02p2 cmfdqr
Model output CESM Assimilation assm globe atm 02p2 cmfdqr\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfdqr (q tendency - shallow convection rainout [kg/kg/s])\n
Model output CESM Assimilation assm globe atm 02p2 cmfdt
Model output CESM Assimilation assm globe atm 02p2 cmfdt\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfdt (t tendency - shallow convection [k/s])\n
Model output CESM Assimilation assm globe atm 02p2 cmfmc
Model output CESM Assimilation assm globe atm 02p2 cmfmc\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfmc (moist shallow convection mass flux [kg/kg])\n
Model output CESM Assimilation assm globe atm 02p2 cmfmcdz
Model output CESM Assimilation assm globe atm 02p2 cmfmcdz\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfmcdzm (convection mass flux from zm deep [kg/m2/s])\n
Model output CESM Assimilation assm globe atm 02p3 atm2d
Model output CESM Assimilation assm globe atm 02p3 atm2d\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][latitude][longitude]):\naerod_v (total aerosol optical depth in visible band [1])\natmeint (vertically integrated total atmospheric energy [j/m2])\ncldhgh (vertically-integrated high cloud [fraction])\ncldlow (vertically-integrated low cloud [fraction])\ncldmed (vertically-integrated med cloud [fraction])\ncldtot (vertically-integrated total cloud [fraction])\nflds (downwelling longwave flux at surface [w/m2])\nfldsc (clearsky downwelling longwave flux at surface [w/m2])\nflns (net longwave flux at surface [w/m2])\nflnsc (clearsky net longwave flux at surfac [w/m2])\nflnt (net longwave flux at top of model [w/m2])\nflntc (clearsky net longwave flux at top of model [w/m2])\nflut (upwelling longwave flux at top of model [w/m2])\nflutc (clearsky upwelling longwave flux at top of model [w/m2])\nfreqsh (fractional occurance of shallow convection [fraction])\nfreqzm (fractional occurance of zm convection [fraction])\nfsds (downwelling solar flux at surface [w/m2])\nfsdsc (clearsky downwelling solar flux at surface [w/m2])\nfsdtoa (downwelling solar flux at top of atmosphere [w/m2])\nfsns (net solar flux at surface [w/m2])\nfsnsc (clearsky net solar flux at surface [w/m2])\nfsnt (net solar flux at top of model [w/m2])\nfsntc (clearsky net solar flux at top of model [w/m2])\nfsntoa (net solar flux at top of atmosphere [w/m2])\nfsntoac (clearsky net solar flux at top of atmosphere [w/m2])\nfsutoa (upwelling solar flux at top of atmosphere [w/m2])\nicefrac (fraction of sfc area covered by sea-ice [fraction])\n... (49 more variables)\n
Model output CESM Assimilation assm globe atm 02p3 cmfdq
Model output CESM Assimilation assm globe atm 02p3 cmfdq\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfdq (qv tendency - shallow convection [kg/kg/s])\n
Model output CESM Assimilation assm globe atm 02p3 cmfdqr
Model output CESM Assimilation assm globe atm 02p3 cmfdqr\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfdqr (q tendency - shallow convection rainout [kg/kg/s])\n
Model output CESM Assimilation assm globe atm 02p3 cmfdt
Model output CESM Assimilation assm globe atm 02p3 cmfdt\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfdt (t tendency - shallow convection [k/s])\n
Model output CESM Assimilation assm globe atm 02p3 cmfmc
Model output CESM Assimilation assm globe atm 02p3 cmfmc\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfmc (moist shallow convection mass flux [kg/kg])\n
Model output CESM Assimilation assm globe atm 02p3 cmfmcdz
Model output CESM Assimilation assm globe atm 02p3 cmfmcdz\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfmcdzm (convection mass flux from zm deep [kg/m2/s])\n
Model output CESM Assimilation assm globe atm 02p4 atm2d
Model output CESM Assimilation assm globe atm 02p4 atm2d\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][latitude][longitude]):\naerod_v (total aerosol optical depth in visible band [1])\natmeint (vertically integrated total atmospheric energy [j/m2])\ncldhgh (vertically-integrated high cloud [fraction])\ncldlow (vertically-integrated low cloud [fraction])\ncldmed (vertically-integrated med cloud [fraction])\ncldtot (vertically-integrated total cloud [fraction])\nflds (downwelling longwave flux at surface [w/m2])\nfldsc (clearsky downwelling longwave flux at surface [w/m2])\nflns (net longwave flux at surface [w/m2])\nflnsc (clearsky net longwave flux at surfac [w/m2])\nflnt (net longwave flux at top of model [w/m2])\nflntc (clearsky net longwave flux at top of model [w/m2])\nflut (upwelling longwave flux at top of model [w/m2])\nflutc (clearsky upwelling longwave flux at top of model [w/m2])\nfreqsh (fractional occurance of shallow convection [fraction])\nfreqzm (fractional occurance of zm convection [fraction])\nfsds (downwelling solar flux at surface [w/m2])\nfsdsc (clearsky downwelling solar flux at surface [w/m2])\nfsdtoa (downwelling solar flux at top of atmosphere [w/m2])\nfsns (net solar flux at surface [w/m2])\nfsnsc (clearsky net solar flux at surface [w/m2])\nfsnt (net solar flux at top of model [w/m2])\nfsntc (clearsky net solar flux at top of model [w/m2])\nfsntoa (net solar flux at top of atmosphere [w/m2])\nfsntoac (clearsky net solar flux at top of atmosphere [w/m2])\nfsutoa (upwelling solar flux at top of atmosphere [w/m2])\nicefrac (fraction of sfc area covered by sea-ice [fraction])\n... (49 more variables)\n
Model output CESM Assimilation assm globe atm 02p4 cmfdq
Model output CESM Assimilation assm globe atm 02p4 cmfdq\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfdq (qv tendency - shallow convection [kg/kg/s])\n
Model output CESM Assimilation assm globe atm 02p4 cmfdqr
Model output CESM Assimilation assm globe atm 02p4 cmfdqr\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfdqr (q tendency - shallow convection rainout [kg/kg/s])\n
Model output CESM Assimilation assm globe atm 02p4 cmfdt
Model output CESM Assimilation assm globe atm 02p4 cmfdt\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfdt (t tendency - shallow convection [k/s])\n
Model output CESM Assimilation assm globe atm 02p4 cmfmc
Model output CESM Assimilation assm globe atm 02p4 cmfmc\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfmc (moist shallow convection mass flux [kg/kg])\n
Model output CESM Assimilation assm globe atm 02p4 cmfmcdz
Model output CESM Assimilation assm globe atm 02p4 cmfmcdz\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfmcdzm (convection mass flux from zm deep [kg/m2/s])\n
Model output CESM Assimilation assm globe atm 02p5 atm2d
Model output CESM Assimilation assm globe atm 02p5 atm2d\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][latitude][longitude]):\naerod_v (total aerosol optical depth in visible band [1])\natmeint (vertically integrated total atmospheric energy [j/m2])\ncldhgh (vertically-integrated high cloud [fraction])\ncldlow (vertically-integrated low cloud [fraction])\ncldmed (vertically-integrated med cloud [fraction])\ncldtot (vertically-integrated total cloud [fraction])\nflds (downwelling longwave flux at surface [w/m2])\nfldsc (clearsky downwelling longwave flux at surface [w/m2])\nflns (net longwave flux at surface [w/m2])\nflnsc (clearsky net longwave flux at surfac [w/m2])\nflnt (net longwave flux at top of model [w/m2])\nflntc (clearsky net longwave flux at top of model [w/m2])\nflut (upwelling longwave flux at top of model [w/m2])\nflutc (clearsky upwelling longwave flux at top of model [w/m2])\nfreqsh (fractional occurance of shallow convection [fraction])\nfreqzm (fractional occurance of zm convection [fraction])\nfsds (downwelling solar flux at surface [w/m2])\nfsdsc (clearsky downwelling solar flux at surface [w/m2])\nfsdtoa (downwelling solar flux at top of atmosphere [w/m2])\nfsns (net solar flux at surface [w/m2])\nfsnsc (clearsky net solar flux at surface [w/m2])\nfsnt (net solar flux at top of model [w/m2])\nfsntc (clearsky net solar flux at top of model [w/m2])\nfsntoa (net solar flux at top of atmosphere [w/m2])\nfsntoac (clearsky net solar flux at top of atmosphere [w/m2])\nfsutoa (upwelling solar flux at top of atmosphere [w/m2])\nicefrac (fraction of sfc area covered by sea-ice [fraction])\n... (49 more variables)\n
Model output CESM Assimilation assm globe atm 02p5 cmfdq
Model output CESM Assimilation assm globe atm 02p5 cmfdq\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfdq (qv tendency - shallow convection [kg/kg/s])\n
Model output CESM Assimilation assm globe atm 02p5 cmfdqr
Model output CESM Assimilation assm globe atm 02p5 cmfdqr\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfdqr (q tendency - shallow convection rainout [kg/kg/s])\n
Model output CESM Assimilation assm globe atm 02p5 cmfdt
Model output CESM Assimilation assm globe atm 02p5 cmfdt\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfdt (t tendency - shallow convection [k/s])\n
Model output CESM Assimilation assm globe atm 02p5 cmfmc
Model output CESM Assimilation assm globe atm 02p5 cmfmc\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfmc (moist shallow convection mass flux [kg/kg])\n
Model output CESM Assimilation assm globe atm 02p5 cmfmcdz
Model output CESM Assimilation assm globe atm 02p5 cmfmcdz\n\ncdm_data_type = Grid\nVARIABLES (all of which use the dimensions [time][LEV][latitude][longitude]):\ncmfmcdzm (convection mass flux from zm deep [kg/m2/s])\n