{
"DOI": { "doi": "10.5066/p9ji8nqf", "identifiers": [], "creators": [ { "name": "Nelson, Nora C", "nameType": "Personal", "givenName": "Nora C", "familyName": "Nelson", "affiliation": [ "United States Geological Survey" ], "nameIdentifiers": [ { "schemeUri": "https://orcid.org", "nameIdentifier": "https://orcid.org/0000-0001-8248-2004", "nameIdentifierScheme": "ORCID" } ] }, { "name": "Halford, Keith J", "nameType": "Personal", "givenName": "Keith J", "familyName": "Halford", "affiliation": [ "United States Geological Survey" ], "nameIdentifiers": [] }, { "name": "Garcia, C. Amanda", "nameType": "Personal", "givenName": "C. Amanda", "familyName": "Garcia", "affiliation": [ "United States Geological Survey" ], "nameIdentifiers": [ { "schemeUri": "https://orcid.org", "nameIdentifier": "https://orcid.org/0000-0003-3776-3565", "nameIdentifierScheme": "ORCID" } ] } ], "titles": [ { "title": "MODFLOW-2005 and PEST models used to simulate the 2016 carbonate-rock aquifer test and characterize hydraulic properties of carbonate-rock and basin-fill aquifers near Long Canyon, Goshute Valley, northeastern Nevada" } ], "publisher": "U.S. Geological Survey", "container": {}, "publicationYear": 2020, "subjects": [ { "subject": "usgsgroundwatermodel, MODFLOW, MODFLOW-2005, PEST, Inland Waters Groundwater, Groundwater Model" } ], "contributors": [], "dates": [ { "date": "2020", "dateType": "Issued" } ], "language": null, "types": { "ris": "GEN", "bibtex": "misc", "citeproc": "article", "schemaOrg": "CreativeWork", "resourceType": "Model", "resourceTypeGeneral": "Model" }, "relatedIdentifiers": [ { "relationType": "IsCitedBy", "relatedIdentifier": "10.3133/sir20215021", "relatedIdentifierType": "DOI" } ], "relatedItems": [], "sizes": [], "formats": [], "version": null, "rightsList": [], "descriptions": [ { "description": "A three-dimension groundwater-flow model (MODFLOW-2005) was developed to improve understanding of groundwater flow and pumping effects near the Long Canyon Mine in Goshute Valley, northeastern Nevada. Bulk hydraulic properties of carbonate rocks and basin-fill aquifers were characterized by simultaneously interpreting steady-state flow during predevelopment conditions and changes in groundwater levels and spring flows from the 2016 multiple-well aquifer test with an integrated groundwater-flow model. This USGS data release contains all of the input and output files for the simulations described in the associated model documentation report (https://doi.org/10.3133/sir2020xxxx).", "descriptionType": "Abstract" } ], "geoLocations": [], "fundingReferences": [], "url": "https://www.sciencebase.gov/catalog/item/631405d9d34e36012efa3457", "contentUrl": null, "metadataVersion": 0, "schemaVersion": "http://datacite.org/schema/kernel-4", "source": "mds", "isActive": true, "state": "findable", "reason": null, "viewCount": 0, "downloadCount": 0, "referenceCount": 0, "citationCount": 0, "partCount": 0, "partOfCount": 0, "versionCount": 0, "versionOfCount": 0, "created": "2021-05-04T22:05:15Z", "registered": "2021-05-04T22:05:17Z", "published": null, "updated": "2023-09-28T19:57:35Z" }
}