Item talk:Q319596

From geokb

{

 "DOI": {
   "doi": "10.5066/p9avwa7z",
   "identifiers": [],
   "creators": [
     {
       "name": "James L Mccreight",
       "nameType": "Personal",
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       "name": "Christian D Langevin",
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       "affiliation": [
         "United States Geological Survey"
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       ]
     },
     {
       "name": "Joseph D Hughes",
       "nameType": "Personal",
       "affiliation": [
         "United States Geological Survey"
       ],
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     {
       "name": "Wesley P Bonelli",
       "nameType": "Personal",
       "affiliation": [
         "Contractor to the United States Geological Survey"
       ],
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         {
           "schemeUri": "https://orcid.org",
           "nameIdentifier": null,
           "nameIdentifierScheme": "ORCID"
         }
       ]
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   ],
   "titles": [
     {
       "title": "pywatershed v1.0.0"
     }
   ],
   "publisher": "U.S. Geological Survey",
   "container": {},
   "publicationYear": 2023,
   "subjects": [
     {
       "subject": ""
     },
     {
       "subject": "national hydrologic model"
     }
   ],
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       "description": "Pywatershed is Python package for simulating hydrologic processes motivated by the need to modernize important, legacy hydrologic models at the USGS, particularly the Precipitation-Runoff Modeling System (PRMS, Markstrom et al., 2015) and its role in GSFLOW (Markstrom et al., 2008). The goal of modernization is to make these legacy models more flexible as process representations, to support testing of alternative hydrologic process conceptualizations, and to facilitate the incorporation of cutting edge modeling techniques and data sources. Pywatershed is a place for experimentation with software design, process representation, and data fusion in the context of well-established hydrologic process modeling.",
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     }
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   "created": "2024-02-08T16:39:09Z",
   "registered": "2024-02-08T16:39:09Z",
   "published": null,
   "updated": "2024-02-08T16:44:59Z"
 }

}