From 7dedb0c3df461b0e7518da14714ab089a95fdb9c Mon Sep 17 00:00:00 2001 From: Sander Niemeijer Date: Wed, 11 Sep 2024 15:33:08 +0200 Subject: [PATCH] Add missing document files --- doc/html/ingestions/GOME2_L2_O3MARS.html | 328 ++++++++++++++++++ doc/html/ingestions/S5P_PAL_L2_HDO_S.html | 393 ++++++++++++++++++++++ 2 files changed, 721 insertions(+) create mode 100644 doc/html/ingestions/GOME2_L2_O3MARS.html create mode 100644 doc/html/ingestions/S5P_PAL_L2_HDO_S.html diff --git a/doc/html/ingestions/GOME2_L2_O3MARS.html b/doc/html/ingestions/GOME2_L2_O3MARS.html new file mode 100644 index 00000000..52b42921 --- /dev/null +++ b/doc/html/ingestions/GOME2_L2_O3MARS.html @@ -0,0 +1,328 @@ + + + + + + + GOME2_L2_O3MARS — HARP 1.23 documentation + + + + + + + + + + + + + + + + + +
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GOME2_L2_O3MARS

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Variables

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The table below lists the variables that are present in the HARP product that results from an ingestion of GOME2_L2_O3MARS data.

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field name

type

dimensions

unit

description

datetime

double

{time}

[seconds since 2000-01-01]

time of the measurement

longitude

double

{time}

[degree_east]

longitude of the measurement

latitude

double

{time}

[degree_north]

latitude of the measurement

longitude_bounds

double

{time, 4}

[degree_east]

corner longitudes of the measurement

latitude_bounds

double

{time, 4}

[degree_north]

corner latitudes of the measurement

solar_azimuth_angle

double

{time}

[degree]

solar azimuth angle

solar_zenith_angle

double

{time}

[degree]

solar zenith angle

viewing_azimuth_angle

double

{time}

[degree]

viewing azimuth angle at top of atmosphere

viewing_zenith_angle

double

{time}

[degree]

viewing zenith angle at top of atmosphere

absorbing_aerosol_index

double

{time}

[degree]

absorbing aerosol index

scan_direction_type

int8

{time}

scan direction for each measurement; enumeration values: forward (0), backward (1)

scene_type

int32

{time}

sun glint condition

aerosol_height

double

{time}

[km]

absorbing aerosol height

aerosol_height_uncertainty

double

{time}

[km]

absorbing aerosol height error

aerosol_pressure

double

{time}

[hPa]

absorbing aerosol pressure

aerosol_pressure_uncertainty

double

{time}

[hPa]

absorbing aerosol pressure error

validity

int32

{time}

[]

error flag for absorbing aerosol height

index

int32

{time}

zero-based index of the sample within the source product

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Mapping description

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The table below details where and how each variable was retrieved from the input product.

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field name

mapping description

datetime

path

/GEOLOCATION/Time[]

longitude

path

/GEOLOCATION/LongitudeCenter[]

latitude

path

/GEOLOCATION/LatitudeCenter[]

longitude_bounds

path

/GEOLOCATION/LongitudeCorner[]

description

the corner coordinates are re-arranged in the order 2-4-3-1

latitude_bounds

path

/GEOLOCATION/LatitudeCorner[]

description

the corner coordinates are re-arranged in the order 2-4-3-1

solar_azimuth_angle

path

/GEOLOCATION/SolarAzimuthAngle[]

solar_zenith_angle

path

/GEOLOCATION/SolarZenithAngle[]

viewing_azimuth_angle

path

/GEOLOCATION/LineOfSightAzimuthAngle[]

viewing_zenith_angle

path

/GEOLOCATION/LineOfSightZenithAngle[]

absorbing_aerosol_index

path

/DATA/AAI[]

scan_direction_type

path

/GEOLOCATION/ScanDirection[]

description

subtract 1 to turn values 1,2 into 0,1

scene_type

path

/DATA/SunGlintFlag[]

aerosol_height

path

/DATA/AAH_AbsorbingAerosolHeight[]

aerosol_height_uncertainty

path

/DATA/AAH_AbsorbingAerosolHeightError[]

aerosol_pressure

path

/DATA/AAH_AbsorbingAerosolPressure[]

aerosol_pressure_uncertainty

path

/DATA/AAH_AbsorbingAerosolPressureError[]

validity

path

/DATA/AAH_ErrorFlag

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© Copyright 2015-2024 S[&]T, The Netherlands.

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S5P_PAL_L2_HDO_S

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Variables

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The table below lists the variables that are present in the HARP product that results from an ingestion of S5P_PAL_L2_HDO_S data.

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field name

type

dimensions

unit

description

scan_subindex

int16

{time}

pixel index (0-based) within the scanline

datetime_start

double

{time}

[seconds since 2010-01-01]

start time of the measurement

datetime_length

double

[s]

duration of the measurement

orbit_index

int32

absolute orbit number

latitude

float

{time}

[degree_north]

latitude of the ground pixel center (WGS84)

longitude

float

{time}

[degree_east]

longitude of the ground pixel center (WGS84)

latitude_bounds

float

{time, 4}

[degree_north]

latitudes of the ground pixel corners (WGS84)

longitude_bounds

float

{time, 4}

[degree_east]

longitudes of the ground pixel corners (WGS84)

solar_zenith_angle

float

{time}

[degree]

zenith angle of the Sun at the ground pixel location (WGS84); angle measured away from the vertical

solar_azimuth_angle

float

{time}

[degree]

azimuth angle of the Sun at the ground pixel location (WGS84); angle measured East-of-North

sensor_zenith_angle

float

{time}

[degree]

zenith angle of the satellite at the ground pixel location (WGS84); angle measured away from the vertical

sensor_azimuth_angle

float

{time}

[degree]

azimuth angle of the satellite at the ground pixel location (WGS84); angle measured East-of-North

altitude_bounds

float

{time, vertical, 2}

[m]

altitude bounds per profile layer

pressure_bounds

float

{time, vertical, 2}

[Pa]

pressure bounds per profile layer

h2o_column_number_density

float

{time}

[molec/cm2]

Vertically integrated column of water

h2o_column_number_density_uncertainty

float

{time}

[molec/cm2]

Standard error of vertically integrated column of water

h2o_column_number_density_apriori

float

{time, vertical}

[molec/cm2]

A-priori vertically integrated partial column of water in layers

h2o_column_number_density_avk

float

{time, vertical}

[(molec/cm2)/(molec/cm2)]

Column averaging kernel of the vertically integrated column of water

hdo_column_number_density

float

{time}

[molec/cm2]

Vertically integrated column of heavy water

hdo_column_number_density_uncertainty

float

{time}

[molec/cm2]

Standard error of vertically integrated column of heavy water

hdo_column_number_density_apriori

float

{time, vertical}

[molec/cm2]

A-priori vertically integrated partial column of heavy water in layers

hdo_column_number_density_avk

float

{time, vertical}

[(molec/cm2)/(molec/cm2)]

Column averaging kernel of the vertically integrated column of heavy water

index

int32

{time}

zero-based index of the sample within the source product

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Mapping description

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The table below details where and how each variable was retrieved from the input product.

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field name

mapping description

scan_subindex

description

the scanline and pixel dimensions are collapsed into a temporal dimension; the index of the pixel within the scanline is computed as the index on the temporal dimension modulo the number of scanlines

datetime_start

path

/PRODUCT/time, /PRODUCT/delta_time[]

description

time converted from milliseconds since a reference time (given as seconds since 2010-01-01) to seconds since 2010-01-01 (using 86400 seconds per day); the time associated with a scanline is repeated for each pixel in the scanline

datetime_length

path

/@time_coverage_resolution

description

the measurement length is parsed assuming the ISO 8601 ‘PT%(interval_seconds)fS’ format

orbit_index

path

/@orbit

latitude

path

/PRODUCT/latitude[]

longitude

path

/PRODUCT/longitude[]

latitude_bounds

path

/PRODUCT/SUPPORT_DATA/GEOLOCATIONS/latitude_bounds[]

longitude_bounds

path

/PRODUCT/SUPPORT_DATA/GEOLOCATIONS/longitude_bounds[]

solar_zenith_angle

path

/PRODUCT/SUPPORT_DATA/GEOLOCATIONS/solar_zenith_angle[]

solar_azimuth_angle

path

/PRODUCT/SUPPORT_DATA/GEOLOCATIONS/solar_azimuth_angle[]

sensor_zenith_angle

path

/PRODUCT/SUPPORT_DATA/GEOLOCATIONS/viewing_zenith_angle[]

sensor_azimuth_angle

path

/PRODUCT/SUPPORT_DATA/GEOLOCATIONS/viewing_azimuth_angle[]

altitude_bounds

path

/PRODUCT/SUPPORT_DATA/INPUT_DATA/altitude_levels[]

description

derived from height per level (layer boundary) by repeating the inner levels; the upper bound of layer k is equal to the lower bound of layer k+1; the vertical grid is inverted to make it ascending

pressure_bounds

path

/PRODUCT/SUPPORT_DATA/INPUT_DATA/pressure_levels[]

description

derived from pressure per level (layer boundary) by repeating the inner levels; the upper bound of layer k is equal to the lower bound of layer k+1; the vertical grid is inverted to make it ascending

h2o_column_number_density

path

/PRODUCT/h2o_column

h2o_column_number_density_uncertainty

path

/PRODUCT/h2o_column

h2o_column_number_density_apriori

path

/PRODUCT/h2o_column

description

the vertical grid is inverted to make it ascending

h2o_column_number_density_avk

path

/PRODUCT/SUPPORT_DATA/DETAILED_RESULTS/h2o_column_averaging_kernel[]

description

the vertical grid is inverted to make it ascending

hdo_column_number_density

path

/PRODUCT/hdo_column

hdo_column_number_density_uncertainty

path

/PRODUCT/hdo_column

hdo_column_number_density_apriori

path

/PRODUCT/hdo_column

description

the vertical grid is inverted to make it ascending

hdo_column_number_density_avk

path

/PRODUCT/SUPPORT_DATA/DETAILED_RESULTS/hdo_column_averaging_kernel[]

description

the vertical grid is inverted to make it ascending

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