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Add AMSR2 L3 Weekly and Monthly layers
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minniewong committed Dec 2, 2024
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The Cloud Liquid Water Path (Daily) layer is the integrated liquid water, cloud water only, in the atmospheric column in units of grams per square meter (g/m<sup>2</sup>).
The Cloud Liquid Water Path (L3, Daily) layer is the integrated liquid water, cloud water only, in the atmospheric column in units of grams per square meter (g/m<sup>2</sup>).

The Advanced Microwave Scanning Radiometer 2 (AMSR2) instrument on the Global Change Observation Mission - Water 1 (GCOM-W1) provides global passive microwave measurements of terrestrial, oceanic, and atmospheric parameters for the investigation of global water and energy cycles.

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The Cloud Liquid Water Path (L3, Monthly) layer is the integrated liquid water, cloud water only, in the atmospheric column in units of grams per square meter (g/m<sup>2</sup>).

The Advanced Microwave Scanning Radiometer 2 (AMSR2) instrument on the Global Change Observation Mission - Water 1 (GCOM-W1) provides global passive microwave measurements of terrestrial, oceanic, and atmospheric parameters for the investigation of global water and energy cycles.

The AMSR-E/AMSR2 Unified L3 Global Monthly Ascending/Descending .25x.25 deg Ocean Grids data set (AU_MoOcn) is a gridded product that reports monthly estimates of water vapor, cloud liquid water content, and surface wind speed over the ocean. The data are derived from resampled Near Real-Time (NRT) Level-1R data provided by Japan Aerospace Exploration Agency (JAXA).

The imagery resolution is 2 km and sensor resolution is 0.25 degrees x 0.25 degrees. The temporal resolution is monthly.

References: AU_MoOcn [doi:10.5067/EX7P1JPQ0UA8](https://doi.org/10.5067/EX7P1JPQ0UA8)
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The Cloud Liquid Water Path (L3, Weekly) layer is the integrated liquid water, cloud water only, in the atmospheric column in units of grams per square meter (g/m<sup>2</sup>).

The Advanced Microwave Scanning Radiometer 2 (AMSR2) instrument on the Global Change Observation Mission - Water 1 (GCOM-W1) provides global passive microwave measurements of terrestrial, oceanic, and atmospheric parameters for the investigation of global water and energy cycles.

The AMSR-E/AMSR2 Unified L3 Global Weekly Ascending/Descending .25 x .25 deg Ocean Grids data set (AU_WkOcn) reports weekly estimates of water vapor, cloud liquid water content, and surface wind speed over the ocean on a global 0.25° × 0.25° resolution grid. The data are derived from the AMSR-E/AMSR2 Unified L2B Global Swath Ocean Products, Version 1 data set.

The imagery resolution is 2 km and sensor resolution is 0.25 degrees x 0.25 degrees. The temporal resolution is weekly.

References: AU_WkOcn [doi:10.5067/1A3CSUWVLD7V](https://doi.org/10.5067/1A3CSUWVLD7V)

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The Ocean Wind Speed (L3, Monthly) layer shows monthly estimates of surface wind speed over oceans in meters per second (m/s) at 10 meter altitude above the ocean surface.

The Advanced Microwave Scanning Radiometer 2 (AMSR2) instrument on the Global Change Observation Mission - Water 1 (GCOM-W1) provides global passive microwave measurements of terrestrial, oceanic, and atmospheric parameters for the investigation of global water and energy cycles.

The AMSR-E/AMSR2 Unified L3 Global Monthly Ascending/Descending .25x.25 deg Ocean Grids data set (AU_MoOcn) is a gridded product that reports monthly estimates of water vapor, cloud liquid water content, and surface wind speed over the ocean. The data are derived from resampled Near Real-Time (NRT) Level-1R data provided by Japan Aerospace Exploration Agency (JAXA).

The imagery resolution is 2 km and sensor resolution is 0.25 degrees x 0.25 degrees. The temporal resolution is monthly.

References: AU_MoOcn [doi:10.5067/EX7P1JPQ0UA8](https://doi.org/10.5067/EX7P1JPQ0UA8)
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The Ocean Wind Speed (L3, Weekly) layer shows daily estimates of surface wind speed over oceans in meters per second (m/s) at 10 meter altitude above the ocean surface.

The Advanced Microwave Scanning Radiometer 2 (AMSR2) instrument on the Global Change Observation Mission - Water 1 (GCOM-W1) provides global passive microwave measurements of terrestrial, oceanic, and atmospheric parameters for the investigation of global water and energy cycles.

The AMSR-E/AMSR2 Unified L3 Global Weekly Ascending/Descending .25 x .25 deg Ocean Grids data set (AU_WkOcn) reports weekly estimates of water vapor, cloud liquid water content, and surface wind speed over the ocean on a global 0.25° × 0.25° resolution grid. The data are derived from the AMSR-E/AMSR2 Unified L2B Global Swath Ocean Products, Version 1 data set.

The imagery resolution is 2 km and sensor resolution is 0.25 degrees x 0.25 degrees. The temporal resolution is weekly.

References: AU_WkOcn [doi:10.5067/1A3CSUWVLD7V](https://doi.org/10.5067/1A3CSUWVLD7V)
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The Total Precipitable Water (Daily) layer displays the integrated water vapor in the atmospheric columnn in millimeters (mm).
The Total Precipitable Water (L3, Daily) layer displays the integrated water vapor in the atmospheric columnn in millimeters (mm).

The Advanced Microwave Scanning Radiometer 2 (AMSR2) instrument on the Global Change Observation Mission - Water 1 (GCOM-W1) provides global passive microwave measurements of terrestrial, oceanic, and atmospheric parameters for the investigation of global water and energy cycles.

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The Total Precipitable Water (L3, Monthly) layer displays the integrated water vapor in the atmospheric columnn in millimeters (mm).

The Advanced Microwave Scanning Radiometer 2 (AMSR2) instrument on the Global Change Observation Mission - Water 1 (GCOM-W1) provides global passive microwave measurements of terrestrial, oceanic, and atmospheric parameters for the investigation of global water and energy cycles.

The AMSR-E/AMSR2 Unified L3 Global Monthly Ascending/Descending .25x.25 deg Ocean Grids data set (AU_MoOcn) is a gridded product that reports monthly estimates of water vapor, cloud liquid water content, and surface wind speed over the ocean. The data are derived from resampled Near Real-Time (NRT) Level-1R data provided by Japan Aerospace Exploration Agency (JAXA).

The imagery resolution is 2 km and sensor resolution is 0.25 degrees x 0.25 degrees. The temporal resolution is monthly.

References: AU_MoOcn [doi:10.5067/EX7P1JPQ0UA8](https://doi.org/10.5067/EX7P1JPQ0UA8)
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The Total Precipitable Water (L3, Weekly) layer displays the integrated water vapor in the atmospheric columnn in millimeters (mm).

The Advanced Microwave Scanning Radiometer 2 (AMSR2) instrument on the Global Change Observation Mission - Water 1 (GCOM-W1) provides global passive microwave measurements of terrestrial, oceanic, and atmospheric parameters for the investigation of global water and energy cycles.

The AMSR-E/AMSR2 Unified L3 Global Weekly Ascending/Descending .25 x .25 deg Ocean Grids data set (AU_WkOcn) reports weekly estimates of water vapor, cloud liquid water content, and surface wind speed over the ocean on a global 0.25° × 0.25° resolution grid. The data are derived from the AMSR-E/AMSR2 Unified L2B Global Swath Ocean Products, Version 1 data set.

The imagery resolution is 2 km and sensor resolution is 0.25 degrees x 0.25 degrees. The temporal resolution is weekly.

References: AU_WkOcn [doi:10.5067/1A3CSUWVLD7V](https://doi.org/10.5067/1A3CSUWVLD7V)
6 changes: 6 additions & 0 deletions config/default/common/config/wv.json/layerOrder.json
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"AMSRU2_L3_Cloud_Liquid_Water_Daily",
"AMSRU2_L3_Total_Precipitable_Water_Daily",
"AMSRU2_L3_Ocean_Wind_Speed_Daily",
"AMSRU2_L3_Cloud_Liquid_Water_Weekly",
"AMSRU2_L3_Total_Precipitable_Water_Weekly",
"AMSRU2_L3_Ocean_Wind_Speed_Weekly",
"AMSRU2_L3_Cloud_Liquid_Water_Monthly",
"AMSRU2_L3_Total_Precipitable_Water_Monthly",
"AMSRU2_L3_Ocean_Wind_Speed_Monthly",
"LPRM_AMSR2_Surface_Soil_Moisture_C1_Band_Day_Daily",
"LPRM_AMSR2_Surface_Soil_Moisture_C1_Band_Night_Daily",
"LPRM_AMSR2_Downscaled_Surface_Soil_Moisture_C1_Band_Day_Daily",
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{
"layers": {
"AMSRU2_L3_Cloud_Liquid_Water_Monthly": {
"id": "AMSRU2_L3_Cloud_Liquid_Water_Monthly",
"description": "amsr2/AMSRU2_L3_Cloud_Liquid_Water_Monthly",
"tags": "amsru2 amsr-u2",
"group": "overlays",
"layergroup": "Cloud Liquid Water"
}
}
}
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{
"layers": {
"AMSRU2_L3_Cloud_Liquid_Water_Weekly": {
"id": "AMSRU2_L3_Cloud_Liquid_Water_Weekly",
"description": "amsr2/AMSRU2_L3_Cloud_Liquid_Water_Weekly",
"tags": "amsru2 amsr-u2",
"group": "overlays",
"layergroup": "Cloud Liquid Water"
}
}
}
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{
"layers": {
"AMSRU2_L3_Ocean_Wind_Speed_Monthly": {
"id": "AMSRU2_L3_Ocean_Wind_Speed_Monthly",
"description": "amsr2/AMSRU2_L3_Ocean_Wind_Speed_Monthly",
"tags": "amsru2 amsr-u2",
"group": "overlays",
"layergroup": "Wind Speed"
}
}
}
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{
"layers": {
"AMSRU2_L3_Ocean_Wind_Speed_Weekly": {
"id": "AMSRU2_L3_Ocean_Wind_Speed_Weekly",
"description": "amsr2/AMSRU2_L3_Ocean_Wind_Speed_Weekly",
"tags": "amsru2 amsr-u2",
"group": "overlays",
"layergroup": "Wind Speed"
}
}
}
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{
"layers": {
"AMSRU2_L3_Total_Precipitable_Water_Monthly": {
"id": "AMSRU2_L3_Total_Precipitable_Water_Monthly",
"description": "amsr2/AMSRU2_L3_Total_Precipitable_Water_Monthly",
"tags": "amsru2 amsr-u2",
"group": "overlays",
"layergroup": "Precipitation Rate"
}
}
}
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{
"layers": {
"AMSRU2_L3_Total_Precipitable_Water_Weekly": {
"id": "AMSRU2_L3_Total_Precipitable_Water_Weekly",
"description": "amsr2/AMSRU2_L3_Total_Precipitable_Water_Weekly",
"tags": "amsru2 amsr-u2",
"group": "overlays",
"layergroup": "Precipitation Rate"
}
}
}
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"AMSRU2_Cloud_Liquid_Water_Day",
"AMSRU2_Cloud_Liquid_Water_Night",
"AMSRU2_L3_Cloud_Liquid_Water_Daily",
"AMSRU2_L3_Cloud_Liquid_Water_Weekly",
"AMSRU2_L3_Cloud_Liquid_Water_Monthly",
"OrbitTracks_GCOM-W1_Ascending",
"OrbitTracks_GCOM-W1_Descending"
]
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"AMSRU2_Total_Precipitable_Water_Day",
"AMSRU2_Total_Precipitable_Water_Night",
"AMSRU2_L3_Total_Precipitable_Water_Daily",
"AMSRU2_L3_Total_Precipitable_Water_Weekly",
"AMSRU2_L3_Total_Precipitable_Water_Monthly",
"OrbitTracks_GCOM-W1_Ascending",
"OrbitTracks_GCOM-W1_Descending"
]
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"AMSRU2_Wind_Speed_Day",
"AMSRU2_Wind_Speed_Night",
"AMSRU2_L3_Ocean_Wind_Speed_Daily",
"AMSRU2_L3_Ocean_Wind_Speed_Weekly",
"AMSRU2_L3_Ocean_Wind_Speed_Monthly",
"OrbitTracks_GCOM-W1_Ascending",
"OrbitTracks_GCOM-W1_Descending"
]
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