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Updated datasets 2024-11-23 UTC
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actions-user committed Nov 23, 2024
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16 changes: 4 additions & 12 deletions datasets/CDIAC_NDP43A.json
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]
},
"assets": {
"ornl": {
"href": "http://cdiac.esd.ornl.gov/ftp/ndp043a/",
"title": "Direct Download [0]",
"description": "\n NDP-043B Data Set Files\n ",
"roles": [
"data"
]
},
"gov/NVODS/getMetadata": {
"href": "http://ferret.pmel.noaa.gov/NVODS/getMetadata.do?dsid=ldeo_cdiac_ndp043a",
"title": "Direct Download [1]",
"description": "\n NVODS Live Access Link for CDIAC NDP043A Coastal Hazards Database\n ",
"3334/CDIAC/SSR": {
"href": "https://data.ess-dive.lbl.gov/view/doi:10.3334/CDIAC/SSR.NDP043A",
"title": "Direct Download",
"description": "NDP-043A Data Set Files\n ",
"roles": [
"data"
]
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2 changes: 1 addition & 1 deletion datasets/PACE_SPEXONE_L1A_SCI_3.json
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"temporal": {
"interval": [
[
"2024-02-08T00:00:00Z",
"2024-02-05T00:00:00Z",
null
]
]
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10 changes: 5 additions & 5 deletions datasets/PACE_SPEXONE_L1B_SCI_3.json
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"type": "Collection",
"id": "PACE_SPEXONE_L1B_SCI_3",
"stac_version": "1.0.0",
"description": "The Spectro-polarimeter for Planetary Exploration one (SPEXone) instrument flying aboard the PACE spacecraft is a multi-angle polarimeter. It measures the intensity, Degree of Linear Polarization (DoLP) and Angle of Linear Polarization (AoLP) of sunlight reflected back from Earth's atmosphere, land surface, and ocean. The focus of the SPEXone development is to achieve a very high accuracy of DoLP measurements, which facilitates accurate characterization of aerosols in the atmosphere.",
"description": "The Spectro-polarimeter for Planetary Exploration one (SPEXone) instrument flying aboard the PACE spacecraft is a multi-angle polarimeter. It measures the intensity, Degree of Linear Polarization (DoLP) and Angle of Linear Polarization (AoLP) of sunlight reflected back from Earth's atmosphere, land surface, and ocean. The focus of the SPEXone development is to achieve a very high accuracy of DoLP measurements, which facilitates accurate characterization of aerosols in the atmosphere.",
"links": [
{
"rel": "license",
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"temporal": {
"interval": [
[
"2024-02-25T00:00:00Z",
"2024-02-05T00:00:00Z",
null
]
]
}
},
"license": "proprietary",
"keywords": [
"Earth Science",
"Ocean Color",
"Oceans",
"Ocean Optics"
"Earth Science",
"Ocean Optics",
"Ocean Color"
],
"summaries": {
"platform": [
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8 changes: 4 additions & 4 deletions datasets/PACE_SPEXONE_L1C_SCI_3.json
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"type": "Collection",
"id": "PACE_SPEXONE_L1C_SCI_3",
"stac_version": "1.0.0",
"description": "The Spectro-polarimeter for Planetary Exploration one (SPEXone) instrument flying aboard the PACE spacecraft is a multi-angle polarimeter. It measures the intensity, Degree of Linear Polarization (DoLP) and Angle of Linear Polarization (AoLP) of sunlight reflected back from Earth's atmosphere, land surface, and ocean. The focus of the SPEXone development is to achieve a very high accuracy of DoLP measurements, which facilitates accurate characterization of aerosols in the atmosphere.",
"description": "The Spectro-polarimeter for Planetary Exploration one (SPEXone) instrument flying aboard the PACE spacecraft is a multi-angle polarimeter. It measures the intensity, Degree of Linear Polarization (DoLP) and Angle of Linear Polarization (AoLP) of sunlight reflected back from Earth's atmosphere, land surface, and ocean. The focus of the SPEXone development is to achieve a very high accuracy of DoLP measurements, which facilitates accurate characterization of aerosols in the atmosphere.",
"links": [
{
"rel": "license",
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"temporal": {
"interval": [
[
"2024-02-25T00:00:00Z",
"2024-02-05T00:00:00Z",
null
]
]
}
},
"license": "proprietary",
"keywords": [
"Earth Science",
"Ocean Optics",
"Ocean Color",
"Oceans",
"Ocean Color"
"Earth Science"
],
"summaries": {
"platform": [
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4 changes: 2 additions & 2 deletions datasets/SMODE_L2_DRIFTER_POSITIONS_V1_1.json
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"type": "Collection",
"id": "SMODE_L2_DRIFTER_POSITIONS_V1_1",
"stac_version": "1.0.0",
"description": "This dataset contains in-situ position data from surface drifters from the Sub-Mesoscale Ocean Dynamics Experiment (S-MODE) conducted approximately 300 km offshore of San Francisco during a pilot campaign over two weeks in October 2021, and two intensive operating periods (IOPs) in Fall 2022 and Spring 2023. S-MODE aims to understand how ocean dynamics acting on short spatial scales influence the vertical exchange of physical and biological variables in the ocean. Drifting buoys were deployed from the research vessels and configured to nominally report positions every five minutes. Drifter position as a function of time is used by S-MODE to measure the average horizontal velocity of currents in the upper 60 cm of the ocean. Tracking and telemetry of the drifters is done by Pacific Gyre, Inc. The data are available in netCDF format with a dimension of time. ",
"description": "This dataset contains in-situ position data from surface drifters from the Sub-Mesoscale Ocean Dynamics Experiment (S-MODE) conducted approximately 300 km offshore of San Francisco during a pilot campaign over two weeks in October 2021, and two intensive operating periods (IOPs) in Fall 2022 and Spring 2023. S-MODE aims to understand how ocean dynamics acting on short spatial scales influence the vertical exchange of physical and biological variables in the ocean. Drifting buoys were deployed from the research vessels and configured to nominally report positions every five minutes. Drifters deployed were a mixture of CARTHE and Microstar types. CARTHE drifters are drogued at 40 cm depth and measure the average horizontal velocity of currents in the upper 60 cm of the ocean (Novelli et al., 2017). Microstar drifters are drogued at 1 m depth and measure the average horizontal velocity of ocean currents between 0.4 m and 1.6 m depth (Ohlmann et al., 2005). See the S-MODE Data Submission Report sections 2.3.2.2, 2.4.2.2 and 2.5.2.3 for more information. Tracking and telemetry of the drifters is done by Pacific Gyre, Inc. The data are available in netCDF format with a dimension of time. ",
"links": [
{
"rel": "license",
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]
},
"nasa": {
"href": "https://search.earthdata.nasa.gov/search/granules?p=C2110184936-POCLOUD",
"href": "https://search.earthdata.nasa.gov/search/granules?p=C2830029002-POCLOUD",
"title": "Direct Download [1]",
"description": "Browse granule search results in Earthdata Search",
"roles": [
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144 changes: 144 additions & 0 deletions datasets/WV03_MSI_L2A_1.json
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@@ -0,0 +1,144 @@
{
"type": "Collection",
"id": "WV03_MSI_L2A_1",
"stac_version": "1.0.0",
"description": "The WorldView-3 Level 2A Multispectral 8-Band Imagery collection contains satellite imagery acquired from Maxar Technologies (formerly known as DigitalGlobe) by the Commercial Smallsat Data Acquisition (CSDA) Program. Imagery is collected by the DigitalGlobe WorldView-3 satellite using the WorldView-110 camera across the global land surface from August 2014 to the present. This satellite imagery is in a range of wavebands with data in the coastal, blue, green, yellow, red, red edge, and near-infrared (2 bands) wavelengths. The imagery has a spatial resolution of 1.24m at nadir and a temporal resolution of less than one day. The data are provided in National Imagery Transmission Format (NITF). These level 2A data have been processed and undergone radiometric correction, sensor correction, projected to a plane using a map projection and datum, and has a coarse DEM applied. The data potentially serve a wide variety of applications that require high resolution imagery. Data access is restricted based on a National Geospatial-Intelligence Agency (NGA) license, and investigators must be approved by the CSDA Program.",
"links": [
{
"rel": "license",
"href": "https://science.nasa.gov/earth-science/earth-science-data/data-information-policy",
"type": "text/html",
"title": "EOSDIS Data Use Policy"
},
{
"rel": "about",
"href": "https://cmr.earthdata.nasa.gov/search/concepts/C2520330358-CSDA.html",
"type": "text/html",
"title": "HTML metadata for collection"
},
{
"rel": "via",
"href": "https://cmr.earthdata.nasa.gov/search/concepts/C2520330358-CSDA.native",
"type": "application/xml",
"title": "Native metadata for collection"
},
{
"rel": "via",
"href": "https://cmr.earthdata.nasa.gov/search/concepts/C2520330358-CSDA.echo10",
"type": "application/echo10+xml",
"title": "ECHO10 metadata for collection"
},
{
"rel": "via",
"href": "https://cmr.earthdata.nasa.gov/search/concepts/C2520330358-CSDA.json",
"type": "application/json",
"title": "CMR JSON metadata for collection"
},
{
"rel": "via",
"href": "https://cmr.earthdata.nasa.gov/search/concepts/C2520330358-CSDA.umm_json",
"type": "application/vnd.nasa.cmr.umm+json",
"title": "CMR UMM_JSON metadata for collection"
},
{
"rel": "self",
"href": "https://cmr.earthdata.nasa.gov/stac/CSDA/collections/WV03_MSI_L2A_1",
"type": "application/json"
},
{
"rel": "root",
"href": "https://cmr.earthdata.nasa.gov/stac/CSDA",
"type": "application/json",
"title": "CSDA STAC Catalog"
},
{
"rel": "items",
"href": "https://cmr.earthdata.nasa.gov/stac/CSDA/collections/WV03_MSI_L2A_1/items",
"type": "application/geo+json",
"title": "Collection Items"
}
],
"provider": [
{
"name": "CSDA",
"roles": [
"producer"
]
},
{
"name": "NASA EOSDIS",
"roles": [
"host"
]
}
],
"title": "WorldView-3 Level 2A Multispectral 8-Band Satellite Imagery",
"extent": {
"spatial": {
"bbox": [
[
-180,
-90,
180,
90
]
]
},
"temporal": {
"interval": [
[
"2014-08-13T00:00:00Z",
null
]
]
}
},
"license": "proprietary",
"keywords": [
"EARTH SCIENCE",
"SPECTRAL/ENGINEERING",
"VISIBLE WAVELENGTHS",
"VISIBLE IMAGERY",
"INFRARED WAVELENGTHS",
"INFRARED IMAGERY",
"VISIBLE RADIANCE",
"INFRARED RADIANCE",
"LAND SURFACE",
"SURFACE RADIATIVE PROPERTIES",
"REFLECTANCE"
],
"summaries": {
"platform": [
"WORLDVIEW-3"
],
"instruments": [
"WV110"
]
},
"assets": {
"nasa": {
"href": "https://csdap.earthdata.nasa.gov/signup/maxar/data-request",
"title": "Direct Download [1]",
"description": "CSDA Program Data Request Form",
"roles": [
"data"
]
},
"provider_metadata": {
"href": "https://doi.org/10.57909/Maxar/WV03_MSI_L2A.001",
"title": "Provider Metadata",
"description": "WorldView-3 Level 2A Multispectral 8-Band Imagery Landing Page",
"roles": [
"metadata"
]
},
"metadata": {
"href": "https://cmr.earthdata.nasa.gov/search/concepts/C2520330358-CSDA.xml",
"type": "application/xml",
"title": "CMR XML metadata for C2520330358-CSDA",
"roles": [
"metadata"
]
}
}
}
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