netcdf VNPAERDB_D3.A2018001.001.2018172154721 {
dimensions:
Latitude_1D = 180 ;
Longitude_1D = 360 ;
Aerosol_Types = 8 ;
Land_Bands = 3 ;
Ocean_Bands = 7 ;
variables:
int Aerosol_Optical_Thickness_550_Land_Count(Latitude_1D, Longitude_1D) ;
Aerosol_Optical_Thickness_550_Land_Count:units = "count" ;
Aerosol_Optical_Thickness_550_Land_Count:coordinates = "Longitude Latitude" ;
Aerosol_Optical_Thickness_550_Land_Count:long_name = "number of retrievals
used for aerosol optical thickness at 550 nm over land" ;
Aerosol_Optical_Thickness_550_Land_Count:_FillValue = -999 ;
Aerosol_Optical_Thickness_550_Land_Count:valid_range = 0, 10000 ;
float Aerosol_Optical_Thickness_550_Land_Maximum(Latitude_1D, Longitude_1D) ;
Aerosol_Optical_Thickness_550_Land_Maximum:long_name = "maximum aerosol
optical thickness estimated at 550 nm over land" ;
;
Aerosol_Optical_Thickness_550_Land_Maximum:units = "1" ;
Aerosol_Optical_Thickness_550_Land_Maximum:_FillValue = -999.f ;
Aerosol_Optical_Thickness_550_Land_Maximum:valid_range = 0.f, 5.f ;
Aerosol_Optical_Thickness_550_Land_Maximum:coordinates = "Longitude Latitude"
float Aerosol_Optical_Thickness_550_Land_Mean(Latitude_1D, Longitude_1D) ;
Aerosol_Optical_Thickness_550_Land_Mean:coordinates = "Longitude Latitude" ;
Aerosol_Optical_Thickness_550_Land_Mean:long_name = "aerosol optical
thickness estimated at 550 nm over land" ;
Aerosol_Optical_Thickness_550_Land_Mean:units = "1" ;
Aerosol_Optical_Thickness_550_Land_Mean:_FillValue = -999.f ;
Aerosol_Optical_Thickness_550_Land_Mean:valid_range = 0.f, 10.f ;
float Aerosol_Optical_Thickness_550_Land_Minimum(Latitude_1D, Longitude_1D) ;
Aerosol_Optical_Thickness_550_Land_Minimum:long_name = "minimum aerosol
optical thickness estimated at 550 nm over land" ;
;
Aerosol_Optical_Thickness_550_Land_Minimum:units = "1" ;
Aerosol_Optical_Thickness_550_Land_Minimum:_FillValue = -999.f ;
Aerosol_Optical_Thickness_550_Land_Minimum:coordinates = "Longitude Latitude"
Aerosol_Optical_Thickness_550_Land_Minimum:valid_range = 0.f, 5.f ;
int Aerosol_Optical_Thickness_550_Land_Ocean_Count(Latitude_1D, Longitude_1D) ;
Aerosol_Optical_Thickness_550_Land_Ocean_Count:units = "count" ;
Aerosol_Optical_Thickness_550_Land_Ocean_Count:long_name = "number of
retrievals used for aerosol optical thickness at 550 nm over land and ocean" ;
Aerosol_Optical_Thickness_550_Land_Ocean_Count:_FillValue = -999 ;
Aerosol_Optical_Thickness_550_Land_Ocean_Count:valid_range = 0, 10000 ;
Aerosol_Optical_Thickness_550_Land_Ocean_Count:coordinates = "Longitude
Latitude" ;
float Aerosol_Optical_Thickness_550_Land_Ocean_Maximum(Latitude_1D, Longitude_1D) ;
Aerosol_Optical_Thickness_550_Land_Ocean_Maximum:long_name = "maximum aerosol
optical thickness estimated at 550 nm over land and ocean" ;
Aerosol_Optical_Thickness_550_Land_Ocean_Maximum:units = "1" ;
Aerosol_Optical_Thickness_550_Land_Ocean_Maximum:_FillValue = -999.f ;
Aerosol_Optical_Thickness_550_Land_Ocean_Maximum:valid_range = 0.f, 5.f ;
Aerosol_Optical_Thickness_550_Land_Ocean_Maximum:coordinates = "Longitude
Latitude" ;
float Aerosol_Optical_Thickness_550_Land_Ocean_Mean(Latitude_1D, Longitude_1D) ;
Aerosol_Optical_Thickness_550_Land_Ocean_Mean:units = "1" ;
Aerosol_Optical_Thickness_550_Land_Ocean_Mean:coordinates = "Longitude
Latitude" ;
Aerosol_Optical_Thickness_550_Land_Ocean_Mean:long_name = "aerosol optical
thickness estimated at 550 nm over land and ocean" ;
Aerosol_Optical_Thickness_550_Land_Ocean_Mean:_FillValue = -999.f ;
Aerosol_Optical_Thickness_550_Land_Ocean_Mean:valid_range = 0.f, 10.f ;
float Aerosol_Optical_Thickness_550_Land_Ocean_Minimum(Latitude_1D, Longitude_1D) ;
Aerosol_Optical_Thickness_550_Land_Ocean_Minimum:long_name = "minimum aerosol
optical thickness estimated at 550 nm over land and ocean" ;
Aerosol_Optical_Thickness_550_Land_Ocean_Minimum:units = "1" ;
Aerosol_Optical_Thickness_550_Land_Ocean_Minimum:_FillValue = -999.f ;
Aerosol_Optical_Thickness_550_Land_Ocean_Minimum:valid_range = 0.f, 5.f ;
Aerosol_Optical_Thickness_550_Land_Ocean_Minimum:coordinates = "Longitude
Latitude" ;
float Aerosol_Optical_Thickness_550_Land_Ocean_Standard_Deviation(Latitude_1D,
Longitude_1D) ;
Aerosol_Optical_Thickness_550_Land_Ocean_Standard_Deviation:units = "1" ;
Aerosol_Optical_Thickness_550_Land_Ocean_Standard_Deviation:long_name =
"standard deviation of aerosol optical thickness estimated at 550 nm over land and ocean" ;
-999.f ;
0.f, 10.f ;
Aerosol_Optical_Thickness_550_Land_Ocean_Standard_Deviation:_FillValue =
Aerosol_Optical_Thickness_550_Land_Ocean_Standard_Deviation:valid_range =
Aerosol_Optical_Thickness_550_Land_Ocean_Standard_Deviation:coordinates =
"Longitude Latitude" ;
float Aerosol_Optical_Thickness_550_Land_Standard_Deviation(Latitude_1D,
Longitude_1D) ;
Aerosol_Optical_Thickness_550_Land_Standard_Deviation:long_name = "standard
deviation of aerosol optical thickness estimated at 550 nm over land" ;
Aerosol_Optical_Thickness_550_Land_Standard_Deviation:units = "1" ;
Aerosol_Optical_Thickness_550_Land_Standard_Deviation:_FillValue = -999.f ;
Aerosol_Optical_Thickness_550_Land_Standard_Deviation:valid_range = 0.f, 10.f
;
Aerosol_Optical_Thickness_550_Land_Standard_Deviation:coordinates =
"Longitude Latitude" ;
int Aerosol_Optical_Thickness_550_Ocean_Count(Latitude_1D, Longitude_1D) ;
Aerosol_Optical_Thickness_550_Ocean_Count:units = "count" ;
Aerosol_Optical_Thickness_550_Ocean_Count:long_name = "number of retrievals
used for aerosol optical thickness at 550 nm over ocean" ;
Aerosol_Optical_Thickness_550_Ocean_Count:_FillValue = -999 ;
;
Aerosol_Optical_Thickness_550_Ocean_Count:valid_range = 0, 10000 ;
Aerosol_Optical_Thickness_550_Ocean_Count:coordinates = "Longitude Latitude"
float Aerosol_Optical_Thickness_550_Ocean_Maximum(Latitude_1D, Longitude_1D) ;
Aerosol_Optical_Thickness_550_Ocean_Maximum:long_name = "maximum aerosol
optical thickness estimated at 550 nm over ocean" ;
Aerosol_Optical_Thickness_550_Ocean_Maximum:units = "1" ;
Aerosol_Optical_Thickness_550_Ocean_Maximum:_FillValue = -999.f ;
Aerosol_Optical_Thickness_550_Ocean_Maximum:valid_range = 0.f, 5.f ;
Aerosol_Optical_Thickness_550_Ocean_Maximum:coordinates = "Longitude
Latitude" ;
float Aerosol_Optical_Thickness_550_Ocean_Mean(Latitude_1D, Longitude_1D) ;
Aerosol_Optical_Thickness_550_Ocean_Mean:long_name = "aerosol optical
thickness estimated at 550 nm over ocean" ;
Aerosol_Optical_Thickness_550_Ocean_Mean:units = "1" ;
Aerosol_Optical_Thickness_550_Ocean_Mean:_FillValue = -999.f ;
Aerosol_Optical_Thickness_550_Ocean_Mean:valid_range = 0.f, 10.f ;
Aerosol_Optical_Thickness_550_Ocean_Mean:coordinates = "Longitude Latitude" ;
float Aerosol_Optical_Thickness_550_Ocean_Minimum(Latitude_1D, Longitude_1D) ;
Aerosol_Optical_Thickness_550_Ocean_Minimum:long_name = "minimum aerosol
optical thickness estimated at 550 nm over ocean" ;
Aerosol_Optical_Thickness_550_Ocean_Minimum:units = "1" ;
Aerosol_Optical_Thickness_550_Ocean_Minimum:_FillValue = -999.f ;
Aerosol_Optical_Thickness_550_Ocean_Minimum:valid_range = 0.f, 5.f ;
Aerosol_Optical_Thickness_550_Ocean_Minimum:coordinates = "Longitude
Latitude" ;
float Aerosol_Optical_Thickness_550_Ocean_Standard_Deviation(Latitude_1D,
Longitude_1D) ;
Aerosol_Optical_Thickness_550_Ocean_Standard_Deviation:long_name = "standard
deviation of aerosol optical thickness estimated at 550 nm over ocean" ;
Aerosol_Optical_Thickness_550_Ocean_Standard_Deviation:units = "1" ;
Aerosol_Optical_Thickness_550_Ocean_Standard_Deviation:_FillValue = -999.f ;
Aerosol_Optical_Thickness_550_Ocean_Standard_Deviation:valid_range = 0.f,
10.f ;
Aerosol_Optical_Thickness_550_Ocean_Standard_Deviation:coordinates =
"Longitude Latitude" ;
int Aerosol_Type_Land_Ocean_Histogram(Aerosol_Types, Latitude_1D, Longitude_1D) ;
Aerosol_Type_Land_Ocean_Histogram:long_name = "histograms of retrieved
aerosol type over land and ocean. Indices (counting from 0) 0=dust(land+ocean), 1=smoke,
2=high altitude smoke, 3=pyrocumulonimbus clouds, 4=non-smoke fine mode, 5=mixed(land+ocean),
6=background(land+ocean maritime), 7=fine dominated" ;
Aerosol_Type_Land_Ocean_Histogram:units = "count" ;
Aerosol_Type_Land_Ocean_Histogram:_FillValue = -999 ;
Aerosol_Type_Land_Ocean_Histogram:coordinates = "Longitude Latitude" ;
Aerosol_Type_Land_Ocean_Histogram:valid_range = 0, 10000 ;
int Aerosol_Type_Land_Ocean_Mode(Latitude_1D, Longitude_1D) ;
Aerosol_Type_Land_Ocean_Mode:units = "1" ;
Aerosol_Type_Land_Ocean_Mode:_FillValue = -999 ;
Aerosol_Type_Land_Ocean_Mode:valid_range = 0, 7 ;
Aerosol_Type_Land_Ocean_Mode:long_name = "modal value of retrieved aerosol
type over land and ocean. 0=dust(land+ocean), 1=smoke, 2=high altitude smoke,
3=pyrocumulonimbus clouds, 4=non-smoke fine mode, 5=mixed(land+ocean),
6=background(land+ocean maritime), 7=fine dominated" ;
Aerosol_Type_Land_Ocean_Mode:coordinates = "Longitude Latitude" ;
int Aerosol_Types(Aerosol_Types) ;
Aerosol_Types:units = "1" ;
Aerosol_Types:long_name = "aerosol types for land and ocean combined data
set. 0=dust(land+ocean), 1=smoke, 2=high altitude smoke, 3=pyrocumulonimbus clouds, 4=non-
smoke fine mode, 5=mixed(land+ocean), 6=background(land+ocean maritime), 7=fine dominated" ;
Aerosol_Types:valid_range = 0, 7 ;
float Angstrom_Exponent_Land_Maximum(Latitude_1D, Longitude_1D) ;
Angstrom_Exponent_Land_Maximum:long_name = "maximum angstrom exponent over
Angstrom_Exponent_Land_Maximum:units = "1" ;
Angstrom_Exponent_Land_Maximum:_FillValue = -999.f ;
Angstrom_Exponent_Land_Maximum:valid_range = -0.5f, 2.5f ;
Angstrom_Exponent_Land_Maximum:coordinates = "Longitude Latitude" ;
land" ;
412 and 490 nm (arid) or 490 and 670 nm (vegetated)" ;
Angstrom_Exponent_Land_Mean:units = "1" ;
Angstrom_Exponent_Land_Mean:_FillValue = -999.f ;
Angstrom_Exponent_Land_Mean:valid_range = -0.5f, 2.5f ;
Angstrom_Exponent_Land_Mean:coordinates = "Longitude Latitude" ;
float Angstrom_Exponent_Land_Minimum(Latitude_1D, Longitude_1D) ;
Angstrom_Exponent_Land_Minimum:long_name = "minimum angstrom exponent over
float Angstrom_Exponent_Land_Mean(Latitude_1D, Longitude_1D) ;
Angstrom_Exponent_Land_Mean:long_name = "angstrom exponent over land, from
land" ;
over land and ocean" ;
Angstrom_Exponent_Land_Ocean_Maximum:units = "1" ;
Angstrom_Exponent_Land_Ocean_Maximum:_FillValue = -999.f ;
Angstrom_Exponent_Land_Ocean_Maximum:valid_range = -0.5f, 2.5f ;
Angstrom_Exponent_Land_Ocean_Maximum:coordinates = "Longitude Latitude" ;
float Angstrom_Exponent_Land_Ocean_Mean(Latitude_1D, Longitude_1D) ;
Angstrom_Exponent_Land_Ocean_Mean:long_name = "angstrom exponent over land
and ocean" ;
Angstrom_Exponent_Land_Ocean_Mean:units = "1" ;
Angstrom_Exponent_Land_Ocean_Mean:_FillValue = -999.f ;
Angstrom_Exponent_Land_Ocean_Mean:valid_range = -0.5f, 2.5f ;
Angstrom_Exponent_Land_Ocean_Mean:coordinates = "Longitude Latitude" ;
float Angstrom_Exponent_Land_Ocean_Minimum(Latitude_1D, Longitude_1D) ;
Angstrom_Exponent_Land_Ocean_Minimum:long_name = "minimum angstrom exponent
Angstrom_Exponent_Land_Minimum:units = "1" ;
Angstrom_Exponent_Land_Minimum:coordinates = "Longitude Latitude" ;
Angstrom_Exponent_Land_Minimum:_FillValue = -999.f ;
Angstrom_Exponent_Land_Minimum:valid_range = -0.5f, 2.5f ;
float Angstrom_Exponent_Land_Ocean_Maximum(Latitude_1D, Longitude_1D) ;
Angstrom_Exponent_Land_Ocean_Maximum:long_name = "maximum angstrom exponent
over land and ocean" ;
Angstrom_Exponent_Land_Ocean_Minimum:units = "1" ;
Angstrom_Exponent_Land_Ocean_Minimum:_FillValue = -999.f ;
Angstrom_Exponent_Land_Ocean_Minimum:valid_range = -0.5f, 2.5f ;
Angstrom_Exponent_Land_Ocean_Minimum:coordinates = "Longitude Latitude" ;
float Angstrom_Exponent_Land_Ocean_Standard_Deviation(Latitude_1D, Longitude_1D) ;
Angstrom_Exponent_Land_Ocean_Standard_Deviation:long_name = "standard
deviation of angstrom exponent over land and ocean" ;
Angstrom_Exponent_Land_Ocean_Standard_Deviation:units = "1" ;
Angstrom_Exponent_Land_Ocean_Standard_Deviation:_FillValue = -999.f ;
Angstrom_Exponent_Land_Ocean_Standard_Deviation:valid_range = 0.f, 10.f ;
Angstrom_Exponent_Land_Ocean_Standard_Deviation:coordinates = "Longitude
Latitude" ;
float Angstrom_Exponent_Land_Standard_Deviation(Latitude_1D, Longitude_1D) ;
Angstrom_Exponent_Land_Standard_Deviation:long_name = "standard deviation of
angstrom exponent over land" ;
Angstrom_Exponent_Land_Standard_Deviation:units = "1" ;
Angstrom_Exponent_Land_Standard_Deviation:_FillValue = -999.f ;
Angstrom_Exponent_Land_Standard_Deviation:valid_range = 0.f, 10.f ;
Angstrom_Exponent_Land_Standard_Deviation:coordinates = "Longitude Latitude"
float Angstrom_Exponent_Ocean_Maximum(Latitude_1D, Longitude_1D) ;
Angstrom_Exponent_Ocean_Maximum:_FillValue = -999.f ;
Angstrom_Exponent_Ocean_Maximum:long_name = "maximum angstrom exponent over
;
ocean" ;
derived from aerosol optical thickness at 550 nm and 870 nm" ;
Angstrom_Exponent_Ocean_Mean:units = "1" ;
Angstrom_Exponent_Ocean_Mean:_FillValue = -999.f ;
Angstrom_Exponent_Ocean_Mean:coordinates = "Longitude Latitude" ;
Angstrom_Exponent_Ocean_Mean:valid_range = -0.5f, 2.5f ;
float Angstrom_Exponent_Ocean_Minimum(Latitude_1D, Longitude_1D) ;
Angstrom_Exponent_Ocean_Minimum:long_name = "minimum angstrom exponent over
Angstrom_Exponent_Ocean_Maximum:units = "1" ;
Angstrom_Exponent_Ocean_Maximum:valid_range = -0.5f, 2.5f ;
Angstrom_Exponent_Ocean_Maximum:coordinates = "Longitude Latitude" ;
float Angstrom_Exponent_Ocean_Mean(Latitude_1D, Longitude_1D) ;
Angstrom_Exponent_Ocean_Mean:long_name = "angstrom exponent over ocean as
ocean" ;
angstrom exponent over ocean" ;
Angstrom_Exponent_Ocean_Standard_Deviation:units = "1" ;
Angstrom_Exponent_Ocean_Standard_Deviation:_FillValue = -999.f ;
Angstrom_Exponent_Ocean_Standard_Deviation:valid_range = 0.f, 10.f ;
Angstrom_Exponent_Ocean_Standard_Deviation:coordinates = "Longitude Latitude"
Fine_Mode_Fraction_550_Ocean_Mean:_FillValue = -999.f ;
Fine_Mode_Fraction_550_Ocean_Mean:units = "1" ;
Fine_Mode_Fraction_550_Ocean_Mean:valid_range = 0.f, 1.f ;
Fine_Mode_Fraction_550_Ocean_Mean:coordinates = "Longitude Latitude" ;
float Fine_Mode_Fraction_550_Ocean_Standard_Deviation(Latitude_1D, Longitude_1D) ;
Fine_Mode_Fraction_550_Ocean_Standard_Deviation:long_name = "standard
deviation of fine mode AOD fraction over ocean" ;
Fine_Mode_Fraction_550_Ocean_Standard_Deviation:_FillValue = -999.f ;
Fine_Mode_Fraction_550_Ocean_Standard_Deviation:units = "1" ;
Fine_Mode_Fraction_550_Ocean_Standard_Deviation:coordinates = "Longitude
;
nm over ocean" ;
Angstrom_Exponent_Ocean_Minimum:units = "1" ;
Angstrom_Exponent_Ocean_Minimum:_FillValue = -999.f ;
Angstrom_Exponent_Ocean_Minimum:valid_range = -0.5f, 2.5f ;
Angstrom_Exponent_Ocean_Minimum:coordinates = "Longitude Latitude" ;
float Angstrom_Exponent_Ocean_Standard_Deviation(Latitude_1D, Longitude_1D) ;
Angstrom_Exponent_Ocean_Standard_Deviation:long_name = "standard deviation of
float Fine_Mode_Fraction_550_Ocean_Mean(Latitude_1D, Longitude_1D) ;
Fine_Mode_Fraction_550_Ocean_Mean:long_name = "fine mode AOD fraction at 550
Latitude" ;
float Land_Bands(Land_Bands) ;
Fine_Mode_Fraction_550_Ocean_Standard_Deviation:valid_range = 0.f, 1.f ;
Land_Bands:units = "nm" ;
Land_Bands:long_name = "wavelength bands over land" ;
Land_Bands:valid_range = 0.f, 16000.f ;
float Latitude(Latitude_1D, Longitude_1D) ;
Latitude:units = "degrees_north" ;
Latitude:standard_name = "latitude" ;
Latitude:long_name = "latitude of center of grid element" ;
Latitude:valid_range = -90.f, 90.f ;
float Latitude_1D(Latitude_1D) ;
Latitude_1D:units = "degrees_north" ;
Latitude_1D:standard_name = "latitude" ;
Latitude_1D:long_name = "latitude of center of grid element" ;
Latitude_1D:valid_range = -90.f, 90.f ;
float Longitude(Latitude_1D, Longitude_1D) ;
Longitude:units = "degrees_east" ;
Longitude:standard_name = "longitude" ;
Longitude:long_name = "longitude of center of grid element" ;
Longitude:valid_range = -180.f, 180.f ;
float Longitude_1D(Longitude_1D) ;
Longitude_1D:units = "degrees_east" ;
Longitude_1D:standard_name = "longitude" ;
Longitude_1D:long_name = "longitude of center of grid element" ;
Longitude_1D:valid_range = -180.f, 180.f ;
float Ocean_Bands(Ocean_Bands) ;
Ocean_Bands:units = "nm" ;
Ocean_Bands:valid_range = 0.f, 16000.f ;
Ocean_Bands:long_name = "wavelength bands over ocean" ;
int Spectral_Aerosol_Optical_Thickness_Land_Count(Land_Bands, Latitude_1D,
Longitude_1D) ;
Spectral_Aerosol_Optical_Thickness_Land_Count:_FillValue = -999 ;
Spectral_Aerosol_Optical_Thickness_Land_Count:valid_range = 0, 10000 ;
Spectral_Aerosol_Optical_Thickness_Land_Count:long_name = "number of
retrievals used for aerosol optical thickness at 412 nm, 490 nm, and 670 nm over land" ;
Spectral_Aerosol_Optical_Thickness_Land_Count:units = "count" ;
Spectral_Aerosol_Optical_Thickness_Land_Count:coordinates = "Longitude
Latitude" ;
float Spectral_Aerosol_Optical_Thickness_Land_Mean(Land_Bands, Latitude_1D,
Longitude_1D) ;
Latitude" ;
Spectral_Aerosol_Optical_Thickness_Land_Mean:_FillValue = -999.f ;
Spectral_Aerosol_Optical_Thickness_Land_Mean:valid_range = 0.f, 10.f ;
Spectral_Aerosol_Optical_Thickness_Land_Mean:coordinates = "Longitude
Spectral_Aerosol_Optical_Thickness_Land_Mean:long_name = "aerosol optical
thickness estimated at 412 nm, 490 nm, and 670 nm over land" ;
Spectral_Aerosol_Optical_Thickness_Land_Mean:units = "1" ;
float Spectral_Aerosol_Optical_Thickness_Land_Standard_Deviation(Land_Bands,
Latitude_1D, Longitude_1D) ;
Spectral_Aerosol_Optical_Thickness_Land_Standard_Deviation:units = "1" ;
Spectral_Aerosol_Optical_Thickness_Land_Standard_Deviation:coordinates =
"Longitude Latitude" ;
Spectral_Aerosol_Optical_Thickness_Land_Standard_Deviation:long_name =
"standard deviation of aerosol optical thickness at 412 nm, 490 nm, and 670 nm over land" ;
Spectral_Aerosol_Optical_Thickness_Land_Standard_Deviation:_FillValue =
-999.f ;
10.f ;
Longitude_1D) ;
Spectral_Aerosol_Optical_Thickness_Land_Standard_Deviation:valid_range = 0.f,
int Spectral_Aerosol_Optical_Thickness_Ocean_Count(Ocean_Bands, Latitude_1D,
Spectral_Aerosol_Optical_Thickness_Ocean_Count:long_name = "number of
retrievals used for aerosol optical thickness at 490, 550 670, 865, 1240, 1610, and 2250 nm
over ocean" ;
Spectral_Aerosol_Optical_Thickness_Ocean_Count:units = "count" ;
Spectral_Aerosol_Optical_Thickness_Ocean_Count:_FillValue = -999 ;
Spectral_Aerosol_Optical_Thickness_Ocean_Count:valid_range = 0, 10000 ;
Spectral_Aerosol_Optical_Thickness_Ocean_Count:coordinates = "Longitude
Latitude" ;
float Spectral_Aerosol_Optical_Thickness_Ocean_Mean(Ocean_Bands, Latitude_1D,
Longitude_1D) ;
Latitude" ;
Spectral_Aerosol_Optical_Thickness_Ocean_Mean:units = "1" ;
Spectral_Aerosol_Optical_Thickness_Ocean_Mean:valid_range = 0.f, 10.f ;
Spectral_Aerosol_Optical_Thickness_Ocean_Mean:coordinates = "Longitude
Spectral_Aerosol_Optical_Thickness_Ocean_Mean:long_name = "aerosol optical
thickness at 490, 550 670, 865, 1240, 1610, and 2250 nm over ocean" ;
Spectral_Aerosol_Optical_Thickness_Ocean_Mean:_FillValue = -999.f ;
float Spectral_Aerosol_Optical_Thickness_Ocean_Standard_Deviation(Ocean_Bands,
Latitude_1D, Longitude_1D) ;
Spectral_Aerosol_Optical_Thickness_Ocean_Standard_Deviation:units = "1" ;
Spectral_Aerosol_Optical_Thickness_Ocean_Standard_Deviation:_FillValue =
-999.f ;
0.f, 10.f ;
"Longitude Latitude" ;
Spectral_Aerosol_Optical_Thickness_Ocean_Standard_Deviation:valid_range =
Spectral_Aerosol_Optical_Thickness_Ocean_Standard_Deviation:coordinates =
Spectral_Aerosol_Optical_Thickness_Ocean_Standard_Deviation:long_name =
"standard deviation of aerosol optical thickness at 490, 550 670, 865, 1240, 1610, and 2250
nm over ocean" ;
// global attributes:
:_NCProperties = "version=1|netcdflibversion=4.4.1|hdf5libversion=1.8.17" ;
:description = "VIIRS Deep Blue Level 3 daily aerosol data, 1x1 degree grid"
;
:comment = "Data are the arithmetic mean of all VIIRS Deep Blue/SOAR L2 data
located in each grid element after filtering by confidence flag. Source are the best_estimate
SDS in L2 files." ;
:references = "https://deepblue.gsfc.nasa.gov" ;
:institution = "NASA Goddard Space Flight Center" ;
:long_name = "VIIRS Deep Blue Level 3 daily aerosol data, 1x1 degree grid" ;
:title = "VIIRS Deep Blue Level 3 daily aerosol data, 1x1 degree grid" ;
:short_name = "VNPDBAER_D3" ;
:version_id = "001" ;
:pge_version = "001" ;
:local_granule_id = "VNPAERDB_D3.A2018001.001.2018172154721.nc" ;
:production_datetime = "2018-06-21T15:47:21Z" ;
:instrument_long_name = "Visible Infrared Imaging Radiometer Suite" ;
:instrument_short_name = "VIIRS" ;
:platform_long_name = "Suomi-National Polar-Orbiting Partnership" ;
:platform_short_name = "S-NPP" ;
:geospatial_lat_max = 90.f ;
:geospatial_lat_min = -90.f ;
:geospatial_lon_min = 180.f ;
:geospatial_lon_max = -180.f ;
:NorthBoundingCoordinate = 90.f ;
:SouthBoundingCoordinate = -90.f ;
:EastBoundingCoordinate = 180.f ;
:WestBoundingCoordinate = -180.f ;
:latitude_resolution = 1.f ;
:longitude_resolution = 1.f ;
:contact_person_name = "Andrew Sayer or Jaehwa Lee" ;
:contact_person_role = "technical contact" ;
:contact_person_address = "NASA/GSFC, 8800 Greenbelt Road, Mail Code 613,
Greenbelt, MD 20771" ;
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VNPAERDB_L2.A2018001.1654.001.2018172042903.nc\n
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VNPAERDB_L2.A2018001.0436.001.2018172042844.nc\n
VNPAERDB_L2.A2018001.2000.001.2018172042920.nc\n
VNPAERDB_L2.A2018001.0148.001.2018172042826.nc\n
VNPAERDB_L2.A2018001.0430.001.2018172042840.nc\n
VNPAERDB_L2.A2018001.1312.001.2018172042849.nc\n
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VNPAERDB_L2.A2018001.0748.001.2018172042904.nc\n
VNPAERDB_L2.A2018001.0330.001.2018172042857.nc\n
\n \n \n
\n" ;
}