Timeline / Data.gov — Climate Datasets
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A new raw object was archived. Both versions are preserved. 868 line(s) added, 1010 line(s) removed.
Evidence
| Source | Data.gov — Climate Datasets |
|---|---|
| Agency | Data.gov |
| URL | https://api.gsa.gov/technology/datagov/v4/search?q=climate&sort=last_harvested_date&per_page=100&api_key=${DATAGOV_API_KEY} |
| Observed by | Civic Memory, directly, on 2026-09-17T00:30:08+00:00 |
| Content type | application/json |
| Current object |
7126cbc55a16a6170b1eda34cbbacdcb7b9c41e94993fc862ff05c00a83c9c5d
download raw
metadata
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| Previous object |
f7ae84afc5dc7ccd1436f3bab107fd863f7993f8415506be43f846d8129dbde9
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metadata
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What changed derived
This diff is not evidence. It was produced by
civic-memory.diff_engine 1.1.0 at
2026-09-17T00:30:08+00:00 by normalizing the two archived objects above. The
objects are authoritative; this reading of them can be regenerated or deleted
without loss. 868 line(s) added, 1010 line(s) removed.
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HLR groups watersheds on the basis of similarities \nin land-surface form, geologic texture, and climate characteristics.\n\t\t\nThe NHDPlus Version 1.1 is an integrated suite of application-ready geospatial datasets that incorporates \nmany of the best features of the National Hydrography Dataset (NHD) and the National Elevation Dataset \n(NED). The NHDPlus includes a stream network (based on the 1:100,00-scale NHD), improved networking, \nnaming, and value-added attributes (VAAs). NHDPlus also includes elevation-derived catchments \n(drainage areas) produced using a drainage enforcement technique first widely used in New England, \nand thus referred to as \"the New England Method.\" This technique involves \"burning in\" the 1:100,000-scale \nNHD and when available building \"walls\" using the National Watershed Boundary Dataset (WBD). The \nresulting modified digital elevation model (HydroDEM) is used to produce hydrologic derivatives that agree \nwith the NHD and WBD. Over the past two years, an interdisciplinary team from the U.S. Geological Survey \n(USGS), and the U.S. Environmental Protection Agency (USEPA), and contractors, found that this method \nproduces the best quality NHD catchments using an automated process (USEPA, 2007). The NHDPlus \ndataset is organized by 18 Production Units that cover the conterminous United States.\n\t\t\nThe NHDPlus version 1.1 data are grouped by the U.S. Geologic Survey's Major River Basins (MRBs, \nCrawford and others, 2006). MRB1, covering the New England and Mid-Atlantic River basins, contains \nNHDPlus Production Units 1 and 2. MRB2, covering the South Atlantic-Gulf and Tennessee River basins, \ncontains NHDPlus Production Units 3 and 6. MRB3, covering the Great Lakes, Ohio, Upper Mississippi, \nand Souris-Red-Rainy River basins, contains NHDPlus Production Units 4, 5, 7 and 9. MRB4, covering \nthe Missouri River basins, contains NHDPlus Production Units 10-lower and 10-upper. MRB5, covering \nthe Lower Mississippi, Arkansas-White-Red, and Texas-Gulf River basins, contains NHDPlus Production \nUnits 8, 11 and 12. MRB6, covering the Rio Grande, Colorado and Great Basin River basins, contains \nNHDPlus Production Units 13, 14, 15 and 16. MRB7, covering the Pacific Northwest River basins, \ncontains NHDPlus Production Unit 17. MRB8, covering California River basins, contains NHDPlus \nProduction Unit 18.", - "distribution": [ - { - "@type": "dcat:Distribution", - "accessURL": "https://water.usgs.gov/lookup/getspatial?nhd_hlr", - "description": "Landing page for access to the data", - "format": "XML", - "mediaType": "application/http", - "title": "Digital Data" - }, - { - "@type": "dcat:Distribution", - "description": "The metadata original format", - "downloadURL": "https://data.usgs.gov/datacatalog/metadata/USGS.93b2f75c-33bc-4cae-b48e-41b6f85d2e39.xml", - "format": "XML", - "mediaType": "text/xml", - "title": "Original Metadata" - } - ], - "identifier": "http://datainventory.doi.gov/id/dataset/USGS_93b2f75c-33bc-4cae-b48e-41b6f85d2e39", - "keyword": [ - "CALI", - "COGB", - "California", - "Catchment", - "Conterminous United States", - "GLMR", - "Great Lakes, Ohio, Upper Mississippi, and Souris-Red-Rainy", - "Hydrologic landscape regions", - "Inlandwaters", - "LMTG", - "Lower Mississippi, Arkansas-White-Red, and Texas-Gulf", - "MORI", - "MRB", - "MRB1", - "MRB2", - "MRB3", - "MRB4", - "MRB5", - "MRB6", - "MRB7", - "MRB8", - "Major River Basin", - "Missouri", - "NAWQA", - "NEMA", - "NHDPlus", - "New England and Mid-Atlantic", - "PANW", - "Pacific Northwest", - "Rio Grande, Colorado, and Great Basin", - "SAGT", - "SPARROW", - "South Atlantic-Gulf and Tennessee", - "USGS:93b2f75c-33bc-4cae-b48e-41b6f85d2e39", - "environment", - "geoscientificInformation", - "inlandWaters" - ], - "modified": "2020-11-17T00:00:00Z", - "publisher": { - "@type": "org:Organization", - "name": "U.S. Geological Survey" - }, - "spatial": "-127.910792, 23.243486, -65.327751, 51.657387", - "theme": [ - "geospatial" - ], - "title": "Attributes for NHDPlus Catchments (Version 1.1) for the Conterminous United States: Hydrologic Landscape Regions" - }, - "description": "This data set represents the area of Hydrologic Landscape Regions (HLR) compiled for every catchment \nof NHDPlus for the conterminous United States. The source data set is a 100-meter version of Hydrologic \nLandscape Regions of the United States (Wolock, 2003). HLR groups watersheds on the basis of similarities \nin land-surface form, geologic texture, and climate characteristics.\n\t\t\nThe NHDPlus Version 1.1 is an integrated suite of application-ready geospatial datasets that incorporates \nmany of the best features of the National Hydrography Dataset (NHD) and the National Elevation Dataset \n(NED). The NHDPlus includes a stream network (based on the 1:100,00-scale NHD), improved networking, \nnaming, and value-added attributes (VAAs). NHDPlus also includes elevation-derived catchments \n(drainage areas) produced using a drainage enforcement technique first widely used in New England, \nand thus referred to as \"the New England Method.\" This technique involves \"burning in\" the 1:100,000-scale \nNHD and when available building \"walls\" using the National Watershed Boundary Dataset (WBD). The \nresulting modified digital elevation model (HydroDEM) is used to produce hydrologic derivatives that agree \nwith the NHD and WBD. Over the past two years, an interdisciplinary team from the U.S. Geological Survey \n(USGS), and the U.S. Environmental Protection Agency (USEPA), and contractors, found that this method \nproduces the best quality NHD catchments using an automated process (USEPA, 2007). The NHDPlus \ndataset is organized by 18 Production Units that cover the conterminous United States.\n\t\t\nThe NHDPlus version 1.1 data are grouped by the U.S. Geologic Survey's Major River Basins (MRBs, \nCrawford and others, 2006). MRB1, covering the New England and Mid-Atlantic River basins, contains \nNHDPlus Production Units 1 and 2. MRB2, covering the South Atlantic-Gulf and Tennessee River basins, \ncontains NHDPlus Production Units 3 and 6. MRB3, covering the Great Lakes, Ohio, Upper Mississippi, \nand Souris-Red-Rainy River basins, contains NHDPlus Production Units 4, 5, 7 and 9. MRB4, covering \nthe Missouri River basins, contains NHDPlus Production Units 10-lower and 10-upper. MRB5, covering \nthe Lower Mississippi, Arkansas-White-Red, and Texas-Gulf River basins, contains NHDPlus Production \nUnits 8, 11 and 12. MRB6, covering the Rio Grande, Colorado and Great Basin River basins, contains \nNHDPlus Production Units 13, 14, 15 and 16. MRB7, covering the Pacific Northwest River basins, \ncontains NHDPlus Production Unit 17. 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Briggs", - "hasEmail": "mailto:mbriggs@usgs.gov" - }, - "description": "1D transient numerical simulations with a modified version of the SUTRA model \n(preliminary code) that accounts for variably-saturated freeze-thaw dynamics \n(e.g. McKenzie and Voss, 2013) to predict annual alluvial aquifer temperature \ndynamics using coupled fluid and heat transport physics. The model simulations \nwere run with a modified version of SUTRA_ICE (unreleased) that accomadates \na time-variable sinusiodal upper temperature boundary. This data release also \nincludes the source code and Argus One GUI files used to build the models, \nthough this proprietary software is not needed to run the models as described \nin the upper-level \"readme\" file.", - "distribution": [ - { - "@type": "dcat:Distribution", - "accessURL": "https://doi.org/10.5066/F7F47M8Q", - "description": "Landing page for access to the data", - "format": "XML", - "mediaType": "application/http", - "title": "Digital Data" - }, - { - "@type": "dcat:Distribution", - "description": "The metadata original format", - "downloadURL": "https://data.usgs.gov/datacatalog/metadata/USGS.8ec2db4f-7c68-42da-8beb-0c4a7cb2d060.xml", - "format": "XML", - "mediaType": "text/xml", - "title": "Original Metadata" - } - ], - "identifier": "http://datainventory.doi.gov/id/dataset/USGS_8ec2db4f-7c68-42da-8beb-0c4a7cb2d060", - "keyword": [ - "Groundwater", - "InlandWaters", - "SUTRA", - "SUTRA-ice", - "Shenandoah National Park", - "Surface Water", - "Thermal", - "USGS:8ec2db4f-7c68-42da-8beb-0c4a7cb2d060", - "Virginia", - "environment", - "geoscientificInformation", - "inlandWaters", - "refugia" - ], - "modified": "2020-11-17T00:00:00Z", - "publisher": { - "@type": "org:Organization", - "name": "U.S. Geological Survey" - }, - "spatial": "-78.378933, 38.53969, -78.347222, 38.58403", - "theme": [ - "geospatial" - ], - "title": "Modeled temperature data developed for study of shallow mountain bedrock limits seepage-based headwater climate refugia, Shenandoah National Park, Virginia: U.S. Geological Survey data release" - }, - "description": "1D transient numerical simulations with a modified version of the SUTRA model \n(preliminary code) that accounts for variably-saturated freeze-thaw dynamics \n(e.g. McKenzie and Voss, 2013) to predict annual alluvial aquifer temperature \ndynamics using coupled fluid and heat transport physics. The model simulations \nwere run with a modified version of SUTRA_ICE (unreleased) that accomadates \na time-variable sinusiodal upper temperature boundary. This data release also \nincludes the source code and Argus One GUI files used to build the models, \nthough this proprietary software is not needed to run the models as described \nin the upper-level \"readme\" file.", - "distribution_titles": [ - "Digital Data", - "Original Metadata" - ], - "harvest_record": "https://catalog.data.gov/harvest_record/3b502053-c468-4aff-b720-c86377f639fe", - "harvest_record_raw": "https://catalog.data.gov/harvest_record/3b502053-c468-4aff-b720-c86377f639fe/raw", - "has_download": true, - "has_spatial": true, - "identifier": "http://datainventory.doi.gov/id/dataset/USGS_8ec2db4f-7c68-42da-8beb-0c4a7cb2d060", - "keyword": [ - "Groundwater", - "InlandWaters", - "SUTRA", - "SUTRA-ice", - "Shenandoah National Park", - "Surface Water", - "Thermal", - "USGS:8ec2db4f-7c68-42da-8beb-0c4a7cb2d060", - "Virginia", - "environment", - "geoscientificInformation", - "inlandWaters", - "refugia" - ], - "last_harvested_date": "2026-09-16T00:36:16.436933", - "organization": { - "aliases": [ - "dept" - ], - "code_repo_exempt": false, - "code_repo_url": null, - "description": null, - "id": "143529f7-2eef-4a07-b227-93ac9e84fad8", - "logo": "https://raw.githubusercontent.com/GSA/logo/master/doi.png", - "name": "Department of the Interior", - "organization_type": "Federal Government", - "slug": "doi" - }, - "parent_identifier": null, - "popularity": 1, - "publisher": "U.S. Geological Survey", - "slug": "modeled-temperature-data-developed-for-study-of-shallow-mountain-bedrock-limits-seepage-ba", - "spatial_centroid": { - "lat": 38.557426, - "lon": -78.3662486 - }, - "spatial_shape": { - "coordinates": [ - [ - [ - -78.378933, - 38.53969 - ], - [ - -78.378933, - 38.58403 - ], - [ - -78.347222, - 38.58403 - ], - [ - -78.347222, - 38.53969 - ], - [ - -78.378933, - 38.53969 - ] - ] - ], - "type": "Polygon" - }, - "theme": [ - "geospatial" - ], - "title": "Modeled temperature data developed for study of shallow mountain bedrock limits seepage-based headwater climate refugia, Shenandoah National Park, Virginia: U.S. Geological Survey data release", - "type": "dataset" - }, - { - "_score": 24.219337, - "_sort": [ - 1789518776699, - 24.219337, - 1, - "cc1e5a35-411e-412b-ae24-a35459c2a5ee" - ], - "dcat": { - "accessLevel": "public", - "bureauCode": [ - "010:12" - ], - "contactPoint": { - "@type": "vcard:Contact", - "fn": "Fred D Tillman", - "hasEmail": "mailto:ftillman@usgs.gov" - }, - "description": "hsg_UCRB_Maurer_resolution.asc is an Esri ASCII grid representing the hydrologic soil group \n(HSG) for the Upper Colorado River Basin. The HSG for an area is determined by the least \nwater-transmitting layer in the soil column. The Natural Resources Conservation Service \n(NRCS) classifies four HSGs from Group A (high infiltration capacity and low overland flow \npotential) to Group D (low infiltration capacity and high overland flow potential). In Soil-Water \nBalance recharge simulations, a lookup table incorporates HSG and land-cover information \nfor each grid cell to define unique runoff curve numbers, vegetation rooting depths, interception \nvalues, and maximum daily recharge values.", - "distribution": [ - { - "@type": "dcat:Distribution", - "accessURL": "https://water.usgs.gov/lookup/getspatial?ofr_2015_1160_hsg_maurer_resolution", - "description": "Landing page for access to the data", - "format": "XML", - "mediaType": "application/http", - "title": "Digital Data" - }, - { - "@type": "dcat:Distribution", - "description": "The metadata original format", - "downloadURL": "https://data.usgs.gov/datacatalog/metadata/USGS.54f57f83-ee11-44ce-82d7-bb5f1e06e86f.xml", - "format": "XML", - "mediaType": "text/xml", - "title": "Original Metadata" - } - ], - "identifier": "http://datainventory.doi.gov/id/dataset/USGS_54f57f83-ee11-44ce-82d7-bb5f1e06e86f", - "keyword": [ - "Arizona", - "California", - "Colorado", - "Nevada", - "New Mexico", - "USGS:54f57f83-ee11-44ce-82d7-bb5f1e06e86f", - "Upper Colorado River Basin", - "Utah", - "Wyoming", - "environment", - "geoscientificInformation", - "groundwater", - "groundwater recharge", - "hydrologic soil group", - "inlandWaters" - ], - "modified": "2020-11-17T00:00:00Z", - "publisher": { - "@type": "org:Organization", - "name": "U.S. Geological Survey" - }, - "spatial": "-112.625, 35.125, -105.25, 43.75", - "theme": [ - "geospatial" - ], - "title": "Hydrologic Soil Group for the Upper Colorado River Basin in Maurer et al. (2002) Climate Data resolution (hsg_UCRB_Maurer_resolution.asc)" - }, - "description": "hsg_UCRB_Maurer_resolution.asc is an Esri ASCII grid representing the hydrologic soil group \n(HSG) for the Upper Colorado River Basin. The HSG for an area is determined by the least \nwater-transmitting layer in the soil column. The Natural Resources Conservation Service \n(NRCS) classifies four HSGs from Group A (high infiltration capacity and low overland flow \npotential) to Group D (low infiltration capacity and high overland flow potential). In Soil-Water \nBalance recharge simulations, a lookup table incorporates HSG and land-cover information \nfor each grid cell to define unique runoff curve numbers, vegetation rooting depths, interception \nvalues, and maximum daily recharge values.", - "distribution_titles": [ - "Digital Data", - "Original Metadata" - ], - "harvest_record": "https://catalog.data.gov/harvest_record/b6459563-4c36-4214-992e-a8a6001b879c", - "harvest_record_raw": "https://catalog.data.gov/harvest_record/b6459563-4c36-4214-992e-a8a6001b879c/raw", - "has_download": true, - "has_spatial": true, - "identifier": "http://datainventory.doi.gov/id/dataset/USGS_54f57f83-ee11-44ce-82d7-bb5f1e06e86f", - "keyword": [ - "Arizona", - "California", - "Colorado", - "Nevada", - "New Mexico", - "USGS:54f57f83-ee11-44ce-82d7-bb5f1e06e86f", - "Upper Colorado River Basin", - "Utah", - "Wyoming", - "environment", - "geoscientificInformation", - "groundwater", - "groundwater recharge", - "hydrologic soil group", - "inlandWaters" - ], - "last_harvested_date": "2026-09-16T00:32:56.699154", - "organization": { - "aliases": [ - "dept" - ], - "code_repo_exempt": false, - "code_repo_url": null, - "description": null, - "id": "143529f7-2eef-4a07-b227-93ac9e84fad8", - "logo": "https://raw.githubusercontent.com/GSA/logo/master/doi.png", - "name": "Department of the Interior", - "organization_type": "Federal Government", - "slug": "doi" - }, - "parent_identifier": null, - "popularity": 1, - "publisher": "U.S. Geological Survey", - "slug": "hydrologic-soil-group-for-the-upper-colorado-river-basin-in-maurer-et-al-2002-climate-data", - "spatial_centroid": { - "lat": 38.575, - "lon": -109.675 - }, - "spatial_shape": { - "coordinates": [ - [ - [ - -112.625, - 35.125 - ], - [ - -112.625, - 43.75 - ], - [ - -105.25, - 43.75 - ], - [ - -105.25, - 35.125 - ], - [ - -112.625, - 35.125 - ] - ] - ], - "type": "Polygon" - }, - "theme": [ - "geospatial" - ], - "title": "Hydrologic Soil Group for the Upper Colorado River Basin in Maurer et al. (2002) Climate Data resolution (hsg_UCRB_Maurer_resolution.asc)", - "type": "dataset" - }, - { - "_score": 31.97302, - "_sort": [ - 1789518681088, - 31.97302, - 1, - "bfcbbb22-7596-41f3-8562-e0d74b5eb014" - ], - "dcat": { - "accessLevel": "public", - "bureauCode": [ - "010:12" - ], - "contactPoint": { - "@type": "vcard:Contact", - "fn": "John A Engott", - "hasEmail": "mailto:jaengott@usgs.gov" - }, - "description": "The shapefile associated with this metadata file represents the spatial distribution of mean annual \nwater-budget components, in inches, for the Island of Oahu, Hawaii. The water-budget components \nin the shapefile were computed by a water-budget model for a scenario representative of average \nclimate conditions (1978–2007 rainfall) and 2010 land cover, as described in USGS Scientific \nInvestigations Report (SIR) 2015-5010. The model was developed for estimating groundwater \nrecharge and other water-budget components for each subarea of the model. The model subareas \nwere generated using Esri ArcGIS software by intersecting (merging) multiple spatial data sets \nthat characterize the spatial distribution of rainfall, fog interception, irrigation, reference \nevapotranspiration, direct runoff, soil type, and land cover. These spatial data sets characterize \nthe spatial distribution of hydrologic and physical conditions that the model uses to compute \ngroundwater recharge and other water-budget components.The model-subarea data set (387,533 \npolygons) was subsequently intersected with the 0-ft elevation contour of the top of the basalt \naquifer to produce the 395,955 polygons in this shapefile. This metadata file describes the process \nof merging these spatial data sets, The shapefile attribute information associated with each \npolygon present an estimate of mean annual rainfall, fog interception, irrigation, septic-system \nleachate, runoff, canopy evaporation, actual evapotranspiration, storm-drain capture, net precipitation, \ntotal evapotranspiration, recharge, and seepage from reservoirs and cesspools. This shapefile also \nincludes select geographic and land-cover attributes of the polygons. Brief descriptions of the \nwater-budget components and attributes are included in this metadata file. Refer to USGS \nSIR 2015-5010 for further details of the methods and sources used to determine these \ncomponents and attributes.", - "distribution": [ - { - "@type": "dcat:Distribution", - "accessURL": "https://water.usgs.gov/lookup/getspatial?sir2015-5010_Oahu_WB_components_avg_climate", - "description": "Landing page for access to the data", - "format": "XML", - "mediaType": "application/http", - "title": "Digital Data" - }, - { - "@type": "dcat:Distribution", - "description": "The metadata original format", - "downloadURL": "https://data.usgs.gov/datacatalog/metadata/USGS.38975e2a-b3ce-44cd-bf4c-9c827c0e1309.xml", - "format": "XML", - "mediaType": "text/xml", - "title": "Original Metadata" - } - ], - "identifier": "http://datainventory.doi.gov/id/dataset/USGS_38975e2a-b3ce-44cd-bf4c-9c827c0e1309", - "keyword": [ - "Hawaii", - "Oahu", - "Pacific islands", - "USGS:38975e2a-b3ce-44cd-bf4c-9c827c0e1309", - "canopy evaporation", - "environment", - "evapotranspiration", - "fog interception", - "geoscientificInformation", - "groundwater recharge", - "inlandWaters", - "irrigation", - "rainfall", - "runoff", - "soil-water balance", - "storm-drain capture", - "water-budget model" - ], - "modified": "2020-11-17T00:00:00Z", - "publisher": { - "@type": "org:Organization", - "name": "U.S. Geological Survey" - }, - "spatial": "-158.282291463, 21.253656969, -157.644933809, 21.714009852", - "theme": [ - "geospatial" - ], - "title": "Mean annual water-budget components for the Island of Oahu, Hawaii, for average climate conditions, 1978-2007 rainfall and 2010 land cover (version 2.0)" - }, - "description": "The shapefile associated with this metadata file represents the spatial distribution of mean annual \nwater-budget components, in inches, for the Island of Oahu, Hawaii. The water-budget components \nin the shapefile were computed by a water-budget model for a scenario representative of average \nclimate conditions (1978–2007 rainfall) and 2010 land cover, as described in USGS Scientific \nInvestigations Report (SIR) 2015-5010. The model was developed for estimating groundwater \nrecharge and other water-budget components for each subarea of the model. The model subareas \nwere generated using Esri ArcGIS software by intersecting (merging) multiple spatial data sets \nthat characterize the spatial distribution of rainfall, fog interception, irrigation, reference \nevapotranspiration, direct runoff, soil type, and land cover. These spatial data sets characterize \nthe spatial distribution of hydrologic and physical conditions that the model uses to compute \ngroundwater recharge and other water-budget components.The model-subarea data set (387,533 \npolygons) was subsequently intersected with the 0-ft elevation contour of the top of the basalt \naquifer to produce the 395,955 polygons in this shapefile. This metadata file describes the process \nof merging these spatial data sets, The shapefile attribute information associated with each \npolygon present an estimate of mean annual rainfall, fog interception, irrigation, septic-system \nleachate, runoff, canopy evaporation, actual evapotranspiration, storm-drain capture, net precipitation, \ntotal evapotranspiration, recharge, and seepage from reservoirs and cesspools. This shapefile also \nincludes select geographic and land-cover attributes of the polygons. Brief descriptions of the \nwater-budget components and attributes are included in this metadata file. Refer to USGS \nSIR 2015-5010 for further details of the methods and sources used to determine these \ncomponents and attributes.", - "distribution_titles": [ - "Digital Data", - "Original Metadata" - ], - "harvest_record": "https://catalog.data.gov/harvest_record/305be3b0-5ae6-4a4c-9908-11a220af8add", - "harvest_record_raw": "https://catalog.data.gov/harvest_record/305be3b0-5ae6-4a4c-9908-11a220af8add/raw", - "has_download": true, - "has_spatial": true, - "identifier": "http://datainventory.doi.gov/id/dataset/USGS_38975e2a-b3ce-44cd-bf4c-9c827c0e1309", - "keyword": [ - "Hawaii", - "Oahu", - "Pacific islands", - "USGS:38975e2a-b3ce-44cd-bf4c-9c827c0e1309", - "canopy evaporation", - "environment", - "evapotranspiration", - "fog interception", - "geoscientificInformation", - "groundwater recharge", - "inlandWaters", - "irrigation", - "rainfall", - "runoff", - "soil-water balance", - "storm-drain capture", - "water-budget model" - ], - "last_harvested_date": "2026-09-16T00:31:21.088146", - "organization": { - "aliases": [ - "dept" - ], - "code_repo_exempt": false, - "code_repo_url": null, - "description": null, - "id": "143529f7-2eef-4a07-b227-93ac9e84fad8", - "logo": "https://raw.githubusercontent.com/GSA/logo/master/doi.png", - "name": "Department of the Interior", - "organization_type": "Federal Government", - "slug": "doi" - }, - "parent_identifier": null, - "popularity": 1, - "publisher": "U.S. Geological Survey", - "slug": "mean-annual-water-budget-components-for-the-island-of-oahu-hawaii-for-average-climate-cond", - "spatial_centroid": { - "lat": 21.4377981222, - "lon": -158.02734840140002 - }, - "spatial_shape": { - "coordinates": [ - [ - [ - -158.282291463, - 21.253656969 - ], - [ - -158.282291463, - 21.714009852 - ], - [ - -157.644933809, - 21.714009852 - ], - [ - -157.644933809, - 21.253656969 - ], - [ - -158.282291463, - 21.253656969 - ] - ] - ], - "type": "Polygon" - }, - "theme": [ - "geospatial" - ], - "title": "Mean annual water-budget components for the Island of Oahu, Hawaii, for average climate conditions, 1978-2007 rainfall and 2010 land cover (version 2.0)", - "type": "dataset" - }, - { - "_score": 14.821403, - "_sort": [ - 1789518430638, - 14.821403, - 3, - "d54f5359-a6d4-43e5-b526-b61c064d5c2b" - ], - "dcat": { - "accessLevel": "public", - "bureauCode": [ - "010:12" - ], - "contactPoint": { - "@type": "vcard:Contact", "fn": "Jennifer S. Stanton", "hasEmail": "mailto:jstanton@usgs.gov" }, @@ -659,7 +23,7 @@ "distribution": [ { "@type": "dcat:Distribution", - "accessURL": "https://water.usgs.gov/lookup/getspatial?ds777_High_Plains_water_budget_components-prism_precip_avein_4049", + "accessURL": "https://doi.org/10.5066/P9UHH793", "description": "Landing page for access to the data", "format": "XML", "mediaType": "application/http", @@ -716,8 +80,8 @@ "Digital Data", "Original Metadata" ], - "harvest_record": "https://catalog.data.gov/harvest_record/cdcdda0a-b4dc-4405-b016-2988be38fa44", - "harvest_record_raw": "https://catalog.data.gov/harvest_record/cdcdda0a-b4dc-4405-b016-2988be38fa44/raw", + "harvest_record": "https://catalog.data.gov/harvest_record/38fb1279-9e77-45b8-95b0-f63e37df9033", + "harvest_record_raw": "https://catalog.data.gov/harvest_record/38fb1279-9e77-45b8-95b0-f63e37df9033/raw", "has_download": true, "has_spatial": true, "identifier": "http://datainventory.doi.gov/id/dataset/USGS_db072ee1-887b-4321-8f3d-cf18830e7a34", @@ -746,7 +110,7 @@ "northern High Plains", "southern High Plains" ], - "last_harvested_date": "2026-09-16T00:27:10.638563", + "last_harvested_date": "2026-09-17T00:29:48.184531", "organization": { "aliases": [ "dept" @@ -802,10 +166,10 @@ "type": "dataset" }, { - "_score": 14.853378, + "_score": 14.856542, "_sort": [ - 1789517951378, - 14.853378, + 1789604493819, + 14.856542, 2, "1b471c58-aa54-4375-b5df-778657a6849a" ], @@ -823,7 +187,7 @@ "distribution": [ { "@type": "dcat:Distribution", - "accessURL": "https://water.usgs.gov/lookup/getspatial?ds777_High_plains_water_budget_components-sowat_rch_avein_0009", + "accessURL": "https://doi.org/10.5066/P90XT1YP", "description": "Landing page for access to the data", "format": "XML", "mediaType": "application/http", @@ -881,8 +245,8 @@ "Digital Data", "Original Metadata" ], - "harvest_record": "https://catalog.data.gov/harvest_record/7750db26-58d1-4164-aad1-7e5ac001501a", - "harvest_record_raw": "https://catalog.data.gov/harvest_record/7750db26-58d1-4164-aad1-7e5ac001501a/raw", + "harvest_record": "https://catalog.data.gov/harvest_record/195803d1-fd40-440b-8d1a-f2312199ccd2", + "harvest_record_raw": "https://catalog.data.gov/harvest_record/195803d1-fd40-440b-8d1a-f2312199ccd2/raw", "has_download": true, "has_spatial": true, "identifier": "http://datainventory.doi.gov/id/dataset/USGS_fab4301e-91af-41bd-ae87-6e598372d09c", @@ -912,7 +276,7 @@ "recharge", "southern High Plains" ], - "last_harvested_date": "2026-09-16T00:19:11.378134", + "last_harvested_date": "2026-09-17T00:21:33.819582", "organization": { "aliases": [ "dept" @@ -968,10 +332,10 @@ "type": "dataset" }, { - "_score": 14.821403, + "_score": 14.8177805, "_sort": [ - 1789517890330, - 14.821403, + 1789604431519, + 14.8177805, 3, "f07c05d7-519b-48b4-a4af-6dc7795e2151" ], @@ -989,7 +353,7 @@ "distribution": [ { "@type": "dcat:Distribution", - "accessURL": "https://water.usgs.gov/lookup/getspatial?ds777_High_Plains_water_budget_components-nws_pet_avein_0009", + "accessURL": "https://doi.org/10.5066/P9UKMDQZ", "description": "Landing page for access to the data", "format": "XML", "mediaType": "application/http", @@ -1047,8 +411,8 @@ "Digital Data", "Original Metadata" ], - "harvest_record": "https://catalog.data.gov/harvest_record/139aabad-f7f2-446f-b0d0-1f1d30017661", - "harvest_record_raw": "https://catalog.data.gov/harvest_record/139aabad-f7f2-446f-b0d0-1f1d30017661/raw", + "harvest_record": "https://catalog.data.gov/harvest_record/6ae24d0a-73af-4e94-8156-fcaede190ff0", + "harvest_record_raw": "https://catalog.data.gov/harvest_record/6ae24d0a-73af-4e94-8156-fcaede190ff0/raw", "has_download": true, "has_spatial": true, "identifier": "http://datainventory.doi.gov/id/dataset/USGS_d8b44992-7421-4ee5-9da6-6172253cfc7b", @@ -1078,7 +442,7 @@ "northern High Plains", "southern High Plains" ], - "last_harvested_date": "2026-09-16T00:18:10.330500", + "last_harvested_date": "2026-09-17T00:20:31.519153", "organization": { "aliases": [ "dept" @@ -1134,10 +498,10 @@ "type": "dataset" }, { - "_score": 9.962372, + "_score": 9.956633, "_sort": [ - 1789517209809, - 9.962372, + 1789603740709, + 9.956633, 1, "87e0ce3b-8413-44c3-99e5-07c79744fa92" ], @@ -1155,7 +519,7 @@ "distribution": [ { "@type": "dcat:Distribution", - "accessURL": "http://doi.org/10.5066/F7X06544", + "accessURL": "https://doi.org/10.5066/F7X06544", "description": "Landing page for access to the data", "format": "XML", "mediaType": "application/http", @@ -1216,8 +580,8 @@ "Digital Data", "Original Metadata" ], - "harvest_record": "https://catalog.data.gov/harvest_record/f9b80fd9-4172-4f4d-92fb-b5f38d8daf97", - "harvest_record_raw": "https://catalog.data.gov/harvest_record/f9b80fd9-4172-4f4d-92fb-b5f38d8daf97/raw", + "harvest_record": "https://catalog.data.gov/harvest_record/5668cce5-c29f-44ee-8cc4-590b8c24760b", + "harvest_record_raw": "https://catalog.data.gov/harvest_record/5668cce5-c29f-44ee-8cc4-590b8c24760b/raw", "has_download": true, "has_spatial": true, "identifier": "http://datainventory.doi.gov/id/dataset/USGS_dba98e35-d294-402c-b31e-4ee461bc6dd1", @@ -1250,7 +614,7 @@ "precipitation", "recharge" ], - "last_harvested_date": "2026-09-16T00:06:49.809465", + "last_harvested_date": "2026-09-17T00:09:00.709909", "organization": { "aliases": [ "dept" @@ -1306,10 +670,10 @@ "type": "dataset" }, { - "_score": 14.821403, + "_score": 14.8177805, "_sort": [ - 1789516988139, - 14.821403, + 1789603523602, + 14.8177805, 1, "35dc6334-671e-49a3-99cf-836c81bd89bf" ], @@ -1327,7 +691,7 @@ "distribution": [ { "@type": "dcat:Distribution", - "accessURL": "https://water.usgs.gov/lookup/getspatial?nv_hlrnv_g", + "accessURL": "https://doi.org/10.5066/P92HOQMU", "description": "Landing page for access to the data", "format": "XML", "mediaType": "application/http", @@ -1373,8 +737,8 @@ "Digital Data", "Original Metadata" ], - "harvest_record": "https://catalog.data.gov/harvest_record/dfee588d-e432-43ce-b5ba-5c89e6b8981f", - "harvest_record_raw": "https://catalog.data.gov/harvest_record/dfee588d-e432-43ce-b5ba-5c89e6b8981f/raw", + "harvest_record": "https://catalog.data.gov/harvest_record/2f48f824-e064-46e5-883f-e70604c1c8c1", + "harvest_record_raw": "https://catalog.data.gov/harvest_record/2f48f824-e064-46e5-883f-e70604c1c8c1/raw", "has_download": true, "has_spatial": true, "identifier": "http://datainventory.doi.gov/id/dataset/USGS_901db279-906b-489f-a960-85cf610dfc9e", @@ -1392,7 +756,7 @@ "precipitation", "soil permeability" ], - "last_harvested_date": "2026-09-16T00:03:08.139693", + "last_harvested_date": "2026-09-17T00:05:23.602445", "organization": { "aliases": [ "dept" @@ -1448,10 +812,10 @@ "type": "dataset" }, { - "_score": 35.18608, + "_score": 35.186523, "_sort": [ - 1789516902130, - 35.18608, + 1789603440914, + 35.186523, 1, "f9d2b5c2-2aca-4a63-95ec-c9d9e90267e6" ], @@ -1462,14 +826,14 @@ ], "contactPoint": { "@type": "vcard:Contact", - "fn": "U.S. Geological Survey", - "hasEmail": "mailto:whsc_data_contact@usgs.gov" + "fn": "Oklahoma-Texas Water Science Center", + "hasEmail": "mailto:gs-w-txpublic-info@usgs.gov" }, "description": "Estimates of area and aerial extent of land-use categories are an essential component \nfor computing the water budget of the High Plains aquifer. These raster land-use land \nclass data represent yearly simulated future land use for the High Plains from 2009 to \n2050 These data were developed using the FOREcasting SCEnarios (FORE-SCE) of \nfuture land cover model (Sohl and others, 2007; Sohl and Sayler 2008) for two (A2 and \nB2) of the four Intergovernmental Panel on Climate Change (IPCC) climate scenarios \nand then processed using a Geographic Information System (GIS). The GIS software \nused to process these data was Environmental Systems Research Institute (ESRI, Inc.) \nArcGIS Desktop 10.0.", "distribution": [ { "@type": "dcat:Distribution", - "accessURL": "https://water.usgs.gov/lookup/getspatial?ds777_High_Plains_predicted_land_use_b2", + "accessURL": "https://doi.org/10.5066/P9FEQ22K", "description": "Landing page for access to the data", "format": "XML", "mediaType": "application/http", @@ -1524,8 +888,8 @@ "Digital Data", "Original Metadata" ], - "harvest_record": "https://catalog.data.gov/harvest_record/1b7ec8b1-46a3-402d-b082-65a3bd993da9", - "harvest_record_raw": "https://catalog.data.gov/harvest_record/1b7ec8b1-46a3-402d-b082-65a3bd993da9/raw", + "harvest_record": "https://catalog.data.gov/harvest_record/b34cf7e7-7570-4e68-ba53-1614d1430389", + "harvest_record_raw": "https://catalog.data.gov/harvest_record/b34cf7e7-7570-4e68-ba53-1614d1430389/raw", "has_download": true, "has_spatial": true, "identifier": "http://datainventory.doi.gov/id/dataset/USGS_ce171d76-dfc7-49ea-9375-3e0596ecc68e", @@ -1552,7 +916,7 @@ "landcover", "landuse" ], - "last_harvested_date": "2026-09-16T00:01:42.130107", + "last_harvested_date": "2026-09-17T00:04:00.914981", "organization": { "aliases": [ "dept" @@ -1608,10 +972,10 @@ "type": "dataset" }, { - "_score": 17.56958, + "_score": 17.586761, "_sort": [ - 1789516503396, - 17.56958, + 1789603021200, + 17.586761, 1, "b9eaecc3-857d-495c-ab5f-5a4d22188160" ], @@ -1629,7 +993,7 @@ "distribution": [ { "@type": "dcat:Distribution", - "accessURL": "http://doi.org/10.5066/F7RV0KTV", + "accessURL": "https://doi.org/10.5066/F7RV0KTV", "description": "Landing page for access to the data", "format": "XML", "mediaType": "application/http", @@ -1683,8 +1047,8 @@ "Digital Data", "Original Metadata" ], - "harvest_record": "https://catalog.data.gov/harvest_record/158ca0c3-6d09-4702-ab7d-d0a181c31034", - "harvest_record_raw": "https://catalog.data.gov/harvest_record/158ca0c3-6d09-4702-ab7d-d0a181c31034/raw", + "harvest_record": "https://catalog.data.gov/harvest_record/39496c37-5890-4412-a029-eb9fa8157e00", + "harvest_record_raw": "https://catalog.data.gov/harvest_record/39496c37-5890-4412-a029-eb9fa8157e00/raw", "has_download": true, "has_spatial": true, "identifier": "http://datainventory.doi.gov/id/dataset/USGS_f01ef6df-e461-43e1-b9cb-af561c85cfca", @@ -1710,7 +1074,7 @@ "inlandWaters", "usgsgroundwatermodel" ], - "last_harvested_date": "2026-09-15T23:55:03.396832", + "last_harvested_date": "2026-09-16T23:57:01.200362", "organization": { "aliases": [ "dept" @@ -1766,10 +1130,10 @@ "type": "dataset" }, { - "_score": 12.277573, + "_score": 12.263064, "_sort": [ - 1789515010777, - 12.277573, + 1789601470073, + 12.263064, 3, "c5c0860e-eada-4094-92be-0d582f10ed06" ], @@ -1787,7 +1151,7 @@ "distribution": [ { "@type": "dcat:Distribution", - "accessURL": "https://water.usgs.gov/lookup/getspatial?mrb_e2rf1_tmin02", + "accessURL": "https://doi.org/10.5066/P9EKKOEN", "description": "Landing page for access to the data", "format": "XML", "mediaType": "application/http", @@ -1859,8 +1223,8 @@ "Digital Data", "Original Metadata" ], - "harvest_record": "https://catalog.data.gov/harvest_record/e4720b5d-6657-4ebf-809e-2f4ada555117", - "harvest_record_raw": "https://catalog.data.gov/harvest_record/e4720b5d-6657-4ebf-809e-2f4ada555117/raw", + "harvest_record": "https://catalog.data.gov/harvest_record/3a39a47d-a77b-4492-a70f-bc29afbebb79", + "harvest_record_raw": "https://catalog.data.gov/harvest_record/3a39a47d-a77b-4492-a70f-bc29afbebb79/raw", "has_download": true, "has_spatial": true, "identifier": "http://datainventory.doi.gov/id/dataset/USGS_aaf1493e-d284-4b81-b5b3-a7bca1c13c63", @@ -1904,7 +1268,7 @@ "geoscientificInformation", "inlandWaters" ], - "last_harvested_date": "2026-09-15T23:30:10.777529", + "last_harvested_date": "2026-09-16T23:31:10.073236", "organization": { "aliases": [ "dept" @@ -1960,10 +1324,10 @@ "type": "dataset" }, { - "_score": 20.363304, + "_score": 20.371727, "_sort": [ - 1789514750081, - 20.363304, + 1789601190892, + 20.371727, 2, "6e42dd7b-c9fe-4103-b683-982ef9f54847" ], @@ -1974,8 +1338,8 @@ ], "contactPoint": { "@type": "vcard:Contact", - "fn": "Center Director", - "hasEmail": "mailto:mierardi@usgs.gov" + "fn": "New Jersey Water Science Center", + "hasEmail": "mailto:gs-w-nj_datarelease@usgs.gov" }, "description": "A MODFLOW-2005 model, using the SWI2 package, was developed for the Sandy Hook Unit, \nGateway National Recreation Area (hereafter Sandy Hook) in New Jersey to evaluate the \nresponse of groundwater resources to expected sea-level rise (SLR) and changes in \ngroundwater recharge associated with global climate change. The National Park Service (NPS), \namong other agencies, is mandated to evaluate the effects of global climate change on NPS \nparks and promote resiliency and sustainability of park resources to the extent possible. Sandy \nHook is visited by thousands of people each year who take advantage of the historical and natural \nresources and recreational opportunities which are threatened by global climate change, including \nSLR, changes in precipitation and groundwater recharge, and changes in the frequency and \nseverity of coastal storms. Fresh groundwater resources are important to the ecosystems of \nSandy Hook. The Bayside Holly Forest, one of only two known old-growth American holly \n(Ilex opaca) maritime forests, is particularly vulnerable to global climate change because of the \nproximity of the water table to land surface in low-lying areas and the potential for saltwater \nintrusion and inundation. Groundwater-flow simulations completed for this study include a \nBaseline scenario, three SLR scenarios (0.2, 0.4, and 0.6 meters [m]), two Recharge \nscenarios—a 10-percent Increased Recharge scenario and a 10-percent Decreased Recharge \nscenario—and a scenario with 0.6 m of SLR and 10-percent increase in recharge. Understanding \nthe possible effects of SLR and changes in recharge will allow the NPS to allocate scarce \nresources to best prepare for and manage climate-change-driven changes in the groundwater \nsystem and the subsequent effects on park ecosystems. This USGS data release contains \nall of the input and output files for the simulations described in the associated model \ndocumentation report (https://doi.org/10.3133/sir20205080).", "distribution": [ @@ -2030,8 +1394,8 @@ "Digital Data", "Original Metadata" ], - "harvest_record": "https://catalog.data.gov/harvest_record/5ae81938-e778-4648-b690-f85253b13554", - "harvest_record_raw": "https://catalog.data.gov/harvest_record/5ae81938-e778-4648-b690-f85253b13554/raw", + "harvest_record": "https://catalog.data.gov/harvest_record/529c1a55-6ed8-451c-863b-2b9729e0911f", + "harvest_record_raw": "https://catalog.data.gov/harvest_record/529c1a55-6ed8-451c-863b-2b9729e0911f/raw", "has_download": true, "has_spatial": true, "identifier": "http://datainventory.doi.gov/id/dataset/USGS_d806c8b2-60ce-4a4c-9460-7002e2b6b0ce", @@ -2052,7 +1416,7 @@ "inlandWaters", "usgsgroundwatermodel" ], - "last_harvested_date": "2026-09-15T23:25:50.081192", + "last_harvested_date": "2026-09-16T23:26:30.892784", "organization": { "aliases": [ "dept" @@ -2108,10 +1472,10 @@ "type": "dataset" }, { - "_score": 11.979211, + "_score": 11.971778, "_sort": [ - 1789514609222, - 11.979211, + 1789601046003, + 11.971778, 4, "d17743ff-0310-40cb-87e2-831dda5dbf61" ], @@ -2129,7 +1493,7 @@ "distribution": [ { "@type": "dcat:Distribution", - "accessURL": "https://water.usgs.gov/lookup/getspatial?ofr_2015_1160_soil-water_balance", + "accessURL": "https://doi.org/10.5066/P9ZFQFJD", "description": "Landing page for access to the data", "format": "XML", "mediaType": "application/http", @@ -2180,8 +1544,8 @@ "Digital Data", "Original Metadata" ], - "harvest_record": "https://catalog.data.gov/harvest_record/9b598b24-f2c2-44ba-917e-aa11143836c8", - "harvest_record_raw": "https://catalog.data.gov/harvest_record/9b598b24-f2c2-44ba-917e-aa11143836c8/raw", + "harvest_record": "https://catalog.data.gov/harvest_record/3ccb6523-9b4b-49f1-bbea-1cc383c58929", + "harvest_record_raw": "https://catalog.data.gov/harvest_record/3ccb6523-9b4b-49f1-bbea-1cc383c58929/raw", "has_download": true, "has_spatial": true, "identifier": "http://datainventory.doi.gov/id/dataset/USGS_850b5cf3-7b38-4a2e-bb0a-4b91f6b6332f", @@ -2204,7 +1568,7 @@ "inlandWaters", "soil-water balance" ], - "last_harvested_date": "2026-09-15T23:23:29.222634", + "last_harvested_date": "2026-09-16T23:24:06.003803", "organization": { "aliases": [ "dept" @@ -2260,10 +1624,10 @@ "type": "dataset" }, { - "_score": 24.013985, + "_score": 24.008808, "_sort": [ - 1789514576521, - 24.013985, + 1789601012177, + 24.008808, 3, "ce120dc2-fe52-439c-b58d-ed71cb442150" ], @@ -2281,7 +1645,7 @@ "distribution": [ { "@type": "dcat:Distribution", - "accessURL": "https://water.usgs.gov/lookup/getspatial?ofr_2015_1160_overland_flow_direction_maurer_resolution", + "accessURL": "https://doi.org/10.5066/P9DW3W86", "description": "Landing page for access to the data", "format": "XML", "mediaType": "application/http", @@ -2330,8 +1694,8 @@ "Digital Data", "Original Metadata" ], - "harvest_record": "https://catalog.data.gov/harvest_record/45f7bd64-cdd7-4b29-8359-325056527ad0", - "harvest_record_raw": "https://catalog.data.gov/harvest_record/45f7bd64-cdd7-4b29-8359-325056527ad0/raw", + "harvest_record": "https://catalog.data.gov/harvest_record/19b6e9a7-fa80-45cb-ab3c-a2fcec0cf49b", + "harvest_record_raw": "https://catalog.data.gov/harvest_record/19b6e9a7-fa80-45cb-ab3c-a2fcec0cf49b/raw", "has_download": true, "has_spatial": true, "identifier": "http://datainventory.doi.gov/id/dataset/USGS_f4f235c4-7666-4ba3-bd7d-0b9b56ae1fda", @@ -2352,7 +1716,7 @@ "inlandWaters", "overland flow direction" ], - "last_harvested_date": "2026-09-15T23:22:56.521698", + "last_harvested_date": "2026-09-16T23:23:32.177571", "organization": { "aliases": [ "dept" @@ -2408,10 +1772,10 @@ "type": "dataset" }, { - "_score": 15.200037, + "_score": 15.20117, "_sort": [ - 1789514506573, - 15.200037, + 1789600939921, + 15.20117, 1, "dd7e3233-6c6b-4728-ac90-38cd1dcd82fa" ], @@ -2422,14 +1786,14 @@ ], "contactPoint": { "@type": "vcard:Contact", - "fn": "U.S. Geological Survey", - "hasEmail": "mailto:whsc_data_contact@usgs.gov" + "fn": "Water Mission Area", + "hasEmail": "mailto:GS-W-model-data@usgs.gov" }, "description": "This is a polygon coverage of the Land Resource Regions and Major Land\nResource Areas of the conterminous United States. Land resource regions\nare geographic areas that are characterized by a particular pattern of\nsoils, climate, water resources and land uses. (USDA, Soil Conservation\nService, 1981). Major land resource areas are subregions of the\nland resource regions and comprise smaller homogeneous areas. The\nscale of this coverage is 1:2,000,000.\n\t\t\nNote: The Soil Conservation Service now (1995) is called the Natural\nResources Conservation Service.\n\t\t\nDescriptors:\n\t\t\nLand Resource Regions\nMajor Land Resource Areas\nUnited States", "distribution": [ { "@type": "dcat:Distribution", - "accessURL": "https://water.usgs.gov/lookup/getspatial?mlra", + "accessURL": "https://doi.org/10.5066/P9C2I3VQ", "description": "Landing page for access to the data", "format": "XML", "mediaType": "application/http", @@ -2469,8 +1833,8 @@ "Digital Data", "Original Metadata" ], - "harvest_record": "https://catalog.data.gov/harvest_record/7763deb2-7534-47ed-a0ec-08ba564b734f", - "harvest_record_raw": "https://catalog.data.gov/harvest_record/7763deb2-7534-47ed-a0ec-08ba564b734f/raw", + "harvest_record": "https://catalog.data.gov/harvest_record/76d076f3-d146-4b61-a887-5b928eed4801", + "harvest_record_raw": "https://catalog.data.gov/harvest_record/76d076f3-d146-4b61-a887-5b928eed4801/raw", "has_download": true, "has_spatial": true, "identifier": "http://datainventory.doi.gov/id/dataset/USGS_9b1592e8-a33b-4ec4-8e54-33a4bf74c17c", @@ -2482,7 +1846,7 @@ "geoscientificInformation", "inlandWaters" ], - "last_harvested_date": "2026-09-15T23:21:46.573757", + "last_harvested_date": "2026-09-16T23:22:19.921331", "organization": { "aliases": [ "dept" @@ -2538,10 +1902,758 @@ "type": "dataset" }, { - "_score": 10.99317, + "_score": 8.122761, + "_sort": [ + 1789584604291, + 8.122761, + 4, + "374f22e6-71ff-41c8-ad59-226d7c041e6e" + ], + "dcat": { + "@type": "dcat:Dataset", + "accessLevel": "public", + "contactPoint": { + "@type": "vcard:Contact", + "fn": "OpenData", + "hasEmail": "mailto:no-reply@data.sf.gov" + }, + "description": "<strong>A. SUMMARY</strong>\nThe Municipal Natural Gas Equipment Inventory serves to catalog natural gas-fueled equipment used in municipally owned buildings. \nThis inventory, implemented by the SF Environment Department, aims to establish an understanding of the scope of work needed to electrify municipal buildings and inform an effective and collaborative planning process.\nThis effort was identified as an action in Section BO-2.4 of the <u><a href=\"https://www.sfenvironment.org/files/events/2021_climate_action_plan.pdf\">2021 Climate Action Plan</a></u> and is included in the <u><a href=\"https://codelibrary.amlegal.com/codes/san_francisco/latest/sf_environment/0-0-0-577\">Environment Code Chapter 7</a></u> (Municipal Green Building Requirements). \n\n<strong>B. HOW THE DATASET IS CREATED</strong>\nThe list of buildings required to report data for the Municipal Natural Gas Equipment Inventory was compiled by cross-referencing the City’s <u><a href=\"https://data.sfgov.org/City-Infrastructure/City-Facilities/nc68-ngbr/about_datax\">Facility Systems of Record</a></u> and the <u><a href=\"https://sfpuc.org/about-us/reports/municipal-buildings-energy-benchmarking\">2020 municipal benchmarking report</a></u> to identify all city-owned buildings with non-zero carbon emissions. Numerous municipal buildings are exempt from these reporting requirements, including facilities of the Port of San Francisco and buildings with a primary purpose of providing collection, storage, treatment, delivery, distribution, and/or transmission of water, wastewater, and/or power utilities. \nEach department received an inventory template, provided by the Environment Department, to submit high level building data and detailed information on each piece of natural gas equipment in use in these buildings. Departments were asked to self-report the required building and equipment data over the course of a 6-month data collection period in 2023 and are asked to keep this inventory up to date in the following years as equipment is replaced. \n\n<strong>C. UPDATE PROCESS</strong>\nThe inventory will be regularly updated by department representatives via the inventory PowerApp. When a gas-powered equipment item is retired or replaced, departments are asked to mark it as no longer in use and provide information on any electric replacement equipment, if applicable. While departments have the flexibility to update the inventory at any time, they are encouraged to do so at 6 month intervals at the minimum. \n\nUpdated inventory data will be automatically reflected in this dataset. \n\n<strong>D. HOW TO USE THIS DATASET</strong>\nIt is important to note that this dataset does not include facilities of the Port of San Francisco and buildings with a primary purpose of providing collection, storage, treatment, delivery, distribution, and/or transmission of water, wastewater, and/or power utilities, in accordance with Environment Code Chapter 7 exemptions.", + "distribution": [ + { + "@type": "dcat:Distribution", + "describedBy": "https://data.sf.gov/api/views/vc6r-v7av/columns.json", + "describedByType": "application/json", + "downloadURL": "https://data.sf.gov/api/v3/views/vc6r-v7av/query.json?accessType=DOWNLOAD", + "mediaType": "application/json" + }, + { + "@type": "dcat:Distribution", + "describedBy": "https://data.sf.gov/api/views/vc6r-v7av/columns.xml", + "describedByType": "application/xml", + "downloadURL": "https://data.sf.gov/api/v3/views/vc6r-v7av/query.xml?accessType=DOWNLOAD", + "mediaType": "application/xml" + }, + { + "@type": "dcat:Distribution", + "downloadURL": "https://data.sf.gov/api/v3/views/vc6r-v7av/export.csv?accessType=DOWNLOAD", + "mediaType": "text/csv" + }, + { + "@type": "dcat:Distribution", + "downloadURL": "https://data.sf.gov/api/v3/views/vc6r-v7av/export.kml?accessType=DOWNLOAD", + "mediaType": "application/vnd.google-earth.kml+xml" + }, + { + "@type": "dcat:Distribution", + "downloadURL": "https://data.sf.gov/api/v3/views/vc6r-v7av/export.kmz?accessType=DOWNLOAD", + "mediaType": "application/vnd.google-earth.kmz" + }, + { + "@type": "dcat:Distribution", + "downloadURL": "https://data.sf.gov/api/v3/views/vc6r-v7av/query.geojson?accessType=DOWNLOAD", + "mediaType": "application/geo+json" + } + ], + "identifier": "https://data.sf.gov/api/views/vc6r-v7av", + "issued": "2024-03-28", + "keyword": [ + "environment", + "environmental health", + "greenhouse gas emissions", + "natural gas" + ], + "landingPage": "https://data.sf.gov/d/vc6r-v7av", + "modified": "2026-09-11", + "publisher": { + "@type": "org:Organization", + "name": "data.sf.gov" + }, + "theme": [ + "Energy and Environment" + ], + "title": "San Francisco Municipal Natural Gas Equipment Inventory" + }, + "description": "<strong>A. SUMMARY</strong>\nThe Municipal Natural Gas Equipment Inventory serves to catalog natural gas-fueled equipment used in municipally owned buildings. \nThis inventory, implemented by the SF Environment Department, aims to establish an understanding of the scope of work needed to electrify municipal buildings and inform an effective and collaborative planning process.\nThis effort was identified as an action in Section BO-2.4 of the <u><a href=\"https://www.sfenvironment.org/files/events/2021_climate_action_plan.pdf\">2021 Climate Action Plan</a></u> and is included in the <u><a href=\"https://codelibrary.amlegal.com/codes/san_francisco/latest/sf_environment/0-0-0-577\">Environment Code Chapter 7</a></u> (Municipal Green Building Requirements). \n\n<strong>B. HOW THE DATASET IS CREATED</strong>\nThe list of buildings required to report data for the Municipal Natural Gas Equipment Inventory was compiled by cross-referencing the City’s <u><a href=\"https://data.sfgov.org/City-Infrastructure/City-Facilities/nc68-ngbr/about_datax\">Facility Systems of Record</a></u> and the <u><a href=\"https://sfpuc.org/about-us/reports/municipal-buildings-energy-benchmarking\">2020 municipal benchmarking report</a></u> to identify all city-owned buildings with non-zero carbon emissions. Numerous municipal buildings are exempt from these reporting requirements, including facilities of the Port of San Francisco and buildings with a primary purpose of providing collection, storage, treatment, delivery, distribution, and/or transmission of water, wastewater, and/or power utilities. \nEach department received an inventory template, provided by the Environment Department, to submit high level building data and detailed information on each piece of natural gas equipment in use in these buildings. Departments were asked to self-report the required building and equipment data over the course of a 6-month data collection period in 2023 and are asked to keep this inventory up to date in the following years as equipment is replaced. \n\n<strong>C. UPDATE PROCESS</strong>\nThe inventory will be regularly updated by department representatives via the inventory PowerApp. When a gas-powered equipment item is retired or replaced, departments are asked to mark it as no longer in use and provide information on any electric replacement equipment, if applicable. While departments have the flexibility to update the inventory at any time, they are encouraged to do so at 6 month intervals at the minimum. \n\nUpdated inventory data will be automatically reflected in this dataset. \n\n<strong>D. HOW TO USE THIS DATASET</strong>\nIt is important to note that this dataset does not include facilities of the Port of San Francisco and buildings with a primary purpose of providing collection, storage, treatment, delivery, distribution, and/or transmission of water, wastewater, and/or power utilities, in accordance with Environment Code Chapter 7 exemptions.", + "distribution_titles": [], + "harvest_record": "https://catalog.data.gov/harvest_record/329bcedf-df1e-46c4-ad33-f4ed967101f6", + "harvest_record_raw": "https://catalog.data.gov/harvest_record/329bcedf-df1e-46c4-ad33-f4ed967101f6/raw", + "has_download": true, + "has_spatial": false, + "identifier": "https://data.sf.gov/api/views/vc6r-v7av", + "keyword": [ + "environment", + "environmental health", + "greenhouse gas emissions", + "natural gas" + ], + "last_harvested_date": "2026-09-16T18:50:04.291783", + "organization": { + "aliases": [ + "sf", + "california" + ], + "code_repo_exempt": false, + "code_repo_url": null, + "description": null, + "id": "7f3c6c7a-ef5f-4ee0-87ce-a0300ba767d5", + "logo": "https://raw.githubusercontent.com/GSA/logo/refs/heads/master/city_san_francisco_ca.png", + "name": "City of San Francisco", + "organization_type": "City Government", + "slug": "san-francisco-ca" + }, + "parent_identifier": null, + "popularity": 4, + "publisher": "data.sf.gov", + "slug": "san-francisco-municipal-natural-gas-equipment-inventory", + "spatial_centroid": null, + "spatial_shape": null, + "theme": [ + "Energy and Environment" + ], + "title": "San Francisco Municipal Natural Gas Equipment Inventory", + "type": "dataset" + }, + { + "_score": 8.153826, + "_sort": [ + 1789519571962, + 8.153826, + 3, + "6fb3691a-55bc-462e-82ed-7db02769e05c" + ], + "dcat": { + "accessLevel": "public", + "bureauCode": [ + "010:12" + ], + "contactPoint": { + "@type": "vcard:Contact", + "fn": "Michael E. Wieczorek", + "hasEmail": "mailto:mewieczo@usgs.gov" + }, + "description": "This data set represents the area of Hydrologic Landscape Regions (HLR) compiled for every catchment \nof NHDPlus for the conterminous United States. The source data set is a 100-meter version of Hydrologic \nLandscape Regions of the United States (Wolock, 2003). HLR groups watersheds on the basis of similarities \nin land-surface form, geologic texture, and climate characteristics.\n\t\t\nThe NHDPlus Version 1.1 is an integrated suite of application-ready geospatial datasets that incorporates \nmany of the best features of the National Hydrography Dataset (NHD) and the National Elevation Dataset \n(NED). The NHDPlus includes a stream network (based on the 1:100,00-scale NHD), improved networking, \nnaming, and value-added attributes (VAAs). NHDPlus also includes elevation-derived catchments \n(drainage areas) produced using a drainage enforcement technique first widely used in New England, \nand thus referred to as \"the New England Method.\" This technique involves \"burning in\" the 1:100,000-scale \nNHD and when available building \"walls\" using the National Watershed Boundary Dataset (WBD). The \nresulting modified digital elevation model (HydroDEM) is used to produce hydrologic derivatives that agree \nwith the NHD and WBD. Over the past two years, an interdisciplinary team from the U.S. Geological Survey \n(USGS), and the U.S. Environmental Protection Agency (USEPA), and contractors, found that this method \nproduces the best quality NHD catchments using an automated process (USEPA, 2007). The NHDPlus \ndataset is organized by 18 Production Units that cover the conterminous United States.\n\t\t\nThe NHDPlus version 1.1 data are grouped by the U.S. Geologic Survey's Major River Basins (MRBs, \nCrawford and others, 2006). MRB1, covering the New England and Mid-Atlantic River basins, contains \nNHDPlus Production Units 1 and 2. MRB2, covering the South Atlantic-Gulf and Tennessee River basins, \ncontains NHDPlus Production Units 3 and 6. MRB3, covering the Great Lakes, Ohio, Upper Mississippi, \nand Souris-Red-Rainy River basins, contains NHDPlus Production Units 4, 5, 7 and 9. MRB4, covering \nthe Missouri River basins, contains NHDPlus Production Units 10-lower and 10-upper. MRB5, covering \nthe Lower Mississippi, Arkansas-White-Red, and Texas-Gulf River basins, contains NHDPlus Production \nUnits 8, 11 and 12. MRB6, covering the Rio Grande, Colorado and Great Basin River basins, contains \nNHDPlus Production Units 13, 14, 15 and 16. MRB7, covering the Pacific Northwest River basins, \ncontains NHDPlus Production Unit 17. MRB8, covering California River basins, contains NHDPlus \nProduction Unit 18.", + "distribution": [ + { + "@type": "dcat:Distribution", + "accessURL": "https://water.usgs.gov/lookup/getspatial?nhd_hlr", + "description": "Landing page for access to the data", + "format": "XML", + "mediaType": "application/http", + "title": "Digital Data" + }, + { + "@type": "dcat:Distribution", + "description": "The metadata original format", + "downloadURL": "https://data.usgs.gov/datacatalog/metadata/USGS.93b2f75c-33bc-4cae-b48e-41b6f85d2e39.xml", + "format": "XML", + "mediaType": "text/xml", + "title": "Original Metadata" + } + ], + "identifier": "http://datainventory.doi.gov/id/dataset/USGS_93b2f75c-33bc-4cae-b48e-41b6f85d2e39", + "keyword": [ + "CALI", + "COGB", + "California", + "Catchment", + "Conterminous United States", + "GLMR", + "Great Lakes, Ohio, Upper Mississippi, and Souris-Red-Rainy", + "Hydrologic landscape regions", + "Inlandwaters", + "LMTG", + "Lower Mississippi, Arkansas-White-Red, and Texas-Gulf", + "MORI", + "MRB", + "MRB1", + "MRB2", + "MRB3", + "MRB4", + "MRB5", + "MRB6", + "MRB7", + "MRB8", + "Major River Basin", + "Missouri", + "NAWQA", + "NEMA", + "NHDPlus", + "New England and Mid-Atlantic", + "PANW", + "Pacific Northwest", + "Rio Grande, Colorado, and Great Basin", + "SAGT", + "SPARROW", + "South Atlantic-Gulf and Tennessee", + "USGS:93b2f75c-33bc-4cae-b48e-41b6f85d2e39", + "environment", + "geoscientificInformation", + "inlandWaters" + ], + "modified": "2020-11-17T00:00:00Z", + "publisher": { + "@type": "org:Organization", + "name": "U.S. Geological Survey" + }, + "spatial": "-127.910792, 23.243486, -65.327751, 51.657387", + "theme": [ + "geospatial" + ], + "title": "Attributes for NHDPlus Catchments (Version 1.1) for the Conterminous United States: Hydrologic Landscape Regions" + }, + "description": "This data set represents the area of Hydrologic Landscape Regions (HLR) compiled for every catchment \nof NHDPlus for the conterminous United States. The source data set is a 100-meter version of Hydrologic \nLandscape Regions of the United States (Wolock, 2003). HLR groups watersheds on the basis of similarities \nin land-surface form, geologic texture, and climate characteristics.\n\t\t\nThe NHDPlus Version 1.1 is an integrated suite of application-ready geospatial datasets that incorporates \nmany of the best features of the National Hydrography Dataset (NHD) and the National Elevation Dataset \n(NED). The NHDPlus includes a stream network (based on the 1:100,00-scale NHD), improved networking, \nnaming, and value-added attributes (VAAs). NHDPlus also includes elevation-derived catchments \n(drainage areas) produced using a drainage enforcement technique first widely used in New England, \nand thus referred to as \"the New England Method.\" This technique involves \"burning in\" the 1:100,000-scale \nNHD and when available building \"walls\" using the National Watershed Boundary Dataset (WBD). The \nresulting modified digital elevation model (HydroDEM) is used to produce hydrologic derivatives that agree \nwith the NHD and WBD. Over the past two years, an interdisciplinary team from the U.S. Geological Survey \n(USGS), and the U.S. Environmental Protection Agency (USEPA), and contractors, found that this method \nproduces the best quality NHD catchments using an automated process (USEPA, 2007). The NHDPlus \ndataset is organized by 18 Production Units that cover the conterminous United States.\n\t\t\nThe NHDPlus version 1.1 data are grouped by the U.S. Geologic Survey's Major River Basins (MRBs, \nCrawford and others, 2006). MRB1, covering the New England and Mid-Atlantic River basins, contains \nNHDPlus Production Units 1 and 2. MRB2, covering the South Atlantic-Gulf and Tennessee River basins, \ncontains NHDPlus Production Units 3 and 6. MRB3, covering the Great Lakes, Ohio, Upper Mississippi, \nand Souris-Red-Rainy River basins, contains NHDPlus Production Units 4, 5, 7 and 9. MRB4, covering \nthe Missouri River basins, contains NHDPlus Production Units 10-lower and 10-upper. MRB5, covering \nthe Lower Mississippi, Arkansas-White-Red, and Texas-Gulf River basins, contains NHDPlus Production \nUnits 8, 11 and 12. MRB6, covering the Rio Grande, Colorado and Great Basin River basins, contains \nNHDPlus Production Units 13, 14, 15 and 16. MRB7, covering the Pacific Northwest River basins, \ncontains NHDPlus Production Unit 17. 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Refer to USGS \nSIR 2015-5010 for further details of the methods and sources used to determine these \ncomponents and attributes.", + "distribution": [ + { + "@type": "dcat:Distribution", + "accessURL": "https://water.usgs.gov/lookup/getspatial?sir2015-5010_Oahu_WB_components_avg_climate", + "description": "Landing page for access to the data", + "format": "XML", + "mediaType": "application/http", + "title": "Digital Data" + }, + { + "@type": "dcat:Distribution", + "description": "The metadata original format", + "downloadURL": "https://data.usgs.gov/datacatalog/metadata/USGS.38975e2a-b3ce-44cd-bf4c-9c827c0e1309.xml", + "format": "XML", + "mediaType": "text/xml", + "title": "Original Metadata" + } + ], + "identifier": "http://datainventory.doi.gov/id/dataset/USGS_38975e2a-b3ce-44cd-bf4c-9c827c0e1309", + "keyword": [ + "Hawaii", + "Oahu", + "Pacific islands", + "USGS:38975e2a-b3ce-44cd-bf4c-9c827c0e1309", + "canopy evaporation", + "environment", + "evapotranspiration", + "fog interception", + "geoscientificInformation", + "groundwater recharge", + "inlandWaters", + "irrigation", + "rainfall", + "runoff", + "soil-water balance", + "storm-drain capture", + "water-budget model" + ], + "modified": "2020-11-17T00:00:00Z", + "publisher": { + "@type": "org:Organization", + "name": "U.S. Geological Survey" + }, + "spatial": "-158.282291463, 21.253656969, -157.644933809, 21.714009852", + "theme": [ + "geospatial" + ], + "title": "Mean annual water-budget components for the Island of Oahu, Hawaii, for average climate conditions, 1978-2007 rainfall and 2010 land cover (version 2.0)" + }, + "description": "The shapefile associated with this metadata file represents the spatial distribution of mean annual \nwater-budget components, in inches, for the Island of Oahu, Hawaii. 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Brief descriptions of the \nwater-budget components and attributes are included in this metadata file. Refer to USGS \nSIR 2015-5010 for further details of the methods and sources used to determine these \ncomponents and attributes.", + "distribution_titles": [ + "Digital Data", + "Original Metadata" + ], + "harvest_record": "https://catalog.data.gov/harvest_record/305be3b0-5ae6-4a4c-9908-11a220af8add", + "harvest_record_raw": "https://catalog.data.gov/harvest_record/305be3b0-5ae6-4a4c-9908-11a220af8add/raw", + "has_download": true, + "has_spatial": true, + "identifier": "http://datainventory.doi.gov/id/dataset/USGS_38975e2a-b3ce-44cd-bf4c-9c827c0e1309", + "keyword": [ + "Hawaii", + "Oahu", + "Pacific islands", + "USGS:38975e2a-b3ce-44cd-bf4c-9c827c0e1309", + "canopy evaporation", + "environment", + "evapotranspiration", + "fog interception", + "geoscientificInformation", + "groundwater recharge", + "inlandWaters", + "irrigation", + "rainfall", + "runoff", + "soil-water balance", + "storm-drain capture", + "water-budget model" + ], + "last_harvested_date": "2026-09-16T00:31:21.088146", + "organization": { + "aliases": [ + "dept" + ], + "code_repo_exempt": false, + "code_repo_url": null, + "description": null, + "id": "143529f7-2eef-4a07-b227-93ac9e84fad8", + "logo": "https://raw.githubusercontent.com/GSA/logo/master/doi.png", + "name": "Department of the Interior", + "organization_type": "Federal Government", + "slug": "doi" + }, + "parent_identifier": null, + "popularity": 1, + "publisher": "U.S. Geological Survey", + "slug": "mean-annual-water-budget-components-for-the-island-of-oahu-hawaii-for-average-climate-cond", + "spatial_centroid": { + "lat": 21.4377981222, + "lon": -158.02734840140002 + }, + "spatial_shape": { + "coordinates": [ + [ + [ + -158.282291463, + 21.253656969 + ], + [ + -158.282291463, + 21.714009852 + ], + [ + -157.644933809, + 21.714009852 + ], + [ + -157.644933809, + 21.253656969 + ], + [ + -158.282291463, + 21.253656969 + ] + ] + ], + "type": "Polygon" + }, + "theme": [ + "geospatial" + ], + "title": "Mean annual water-budget components for the Island of Oahu, Hawaii, for average climate conditions, 1978-2007 rainfall and 2010 land cover (version 2.0)", + "type": "dataset" + }, + { + "_score": 11.030319, "_sort": [ 1789513555513, - 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Changes in climate are expected to lead to additional impacts in stream habitats and fish assemblages in multiple ways, including changing stream water temperatures. To manage streams for current impacts and future changes, managers need region-wide information for decision-making and developing proactive management strategies. Our project met that need by integrating results of a current condition assessment of stream habitats based on fish response to human land use, water quality impairment, and fragmentation by dams with estimates of which stream habitats may change in the future. Results are available for all streams in the NE CSC region through a spatially-explicit, web-based viewer (FishTail). With this tool, managers can evaluate how streams of interest are currently impacted by land uses and assess if those habitats may change with climate. These results, available in a comparable way throughout the NE CSC, provide natural resource managers, decision-makers, and the public with a wealth of information to better protect and conserve stream fishes and their habitats. These data are integrated into a web-based decision support viewer (FishTail): 1) current condition of streams determined from disturbances limiting stream fishes, 2) future conditions resulting from changes in climate, and, 3) changes in water temperature for key locations resulting from climate changes for all streams of the NE CSC region. The report that documents these data is: Daniel, W., N. Sievert, D. Infante, J. Whittier, J. Stewart, C. Paukert, and K. Herreman. 2016. A decision support mapper for conserving stream fish habitats of the Northeast Climate Science Center region. 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This data was collected using water samples collected in association with other intertidal biodiversity monitoring protocols developed specifically for the mixed coarse substrate habitat found on the inner islands of Boston Harbor, including Gallops, Georges, Lovell (alternatively known as Lovells Island), Peddocks, and Thompson Island. Species were identified using an eDNA metabarcoding approach targeting the 12s (vertebrate) and 18s (invertebrate and macro algae) gene regions. Total read count scores for species detected ar + "description": "Human impacts occurring throughout the Northeast United StatesDOI Northeast Climate Science Center, including urbanization, agriculture, and dams, have multiple effects on the region’s streams which support economically valuable stream fishes. Changes in climate are expected to lead to additional impacts in stream habitats and fish assemblages in multiple ways, including changing stream water temperatures. To manage streams for current impacts and future changes, managers need region-wide information for decision-making and developing proactive management strategies. Our project met that need by integrating results of a current condition assessment of stream habitats based on fish response to human land use, water quality impairment, and fragmentation by dams with estimates of which stream habitats may change in the future. Results are available for all streams in the NE CSC region through a spatially-explicit, web-based viewer (FishTail). With this tool, managers can evaluate how streams of interest are currently impacted by land uses and assess if those habitats may change with climate. These results, available in a comparable way throughout the NE CSC, provide natural resource managers, decision-makers, and the public with a wealth of information to better protect and conserve stream fishes and their habitats. These