Item talk:Q49376: Difference between revisions
From geokb
(Added select OpenAlex data) |
(caching schema from staff profile page) |
||
(One intermediate revision by the same user not shown) | |||
Line 1: | Line 1: | ||
{ | |||
"USGS Staff Profile": { | |||
"@context": "https://schema.org", | |||
"@type": "Person", | |||
"affiliation": [], | |||
"description": [ | |||
{ | |||
"@type": "TextObject", | |||
"abstract": "Machine Learning Specialist with the Water Resources Mission Area", | |||
"additionalType": "short description" | |||
}, | |||
{ | |||
"@type": "TextObject", | |||
"abstract": "Jared D. Smith, Ph.D., is a Machine Learning Specialist in the USGS Water Resources Mission Area. He is based in Reston, VA.", | |||
"additionalType": "staff profile page introductory statement" | |||
}, | |||
{ | |||
"@type": "TextObject", | |||
"abstract": "Jared has a background in environmental systems engineering, spatial data analysis, and statistics. His previous research has coupled physical and mathematical models with statistical analyses to inform planning and management decisions for environmental, earth-energy, and water resources systems. Jared joined the USGS in 2021 after completing a postdoc at The University of Virginia, where he developed green infrastructure portfolio optimizations that were designed to be robust to Bayesian-estimated parametric uncertainty of a watershed model. Jared completed his Ph.D. at Cornell University, where his research addressed Appalachian Basin geothermal resource assessment and subsequent uncertainty assessments for deep geothermal district heating projects at the Cornell and West Virginia University campuses. Previous work has also addressed ice jam flood frequency analysis under climate change, applied to the Peace-Athabasca Delta in Canada.", | |||
"additionalType": "personal statement" | |||
}, | |||
{ | |||
"@type": "TextObject", | |||
"abstract": "\u200bCluster Analysis and Prediction of Flood Flow Metrics for Minimally Altered Catchments in the Conterminous United States, HydroML Symposium 2022", | |||
"additionalType": "staff profile page abstract" | |||
}, | |||
{ | |||
"@type": "TextObject", | |||
"abstract": "Discovering Flood Regions and Predicting Flood Flow Metrics to Inform Bridge Scour Studies in the Conterminous United States, National Hydraulic Engineering Conference, 2022", | |||
"additionalType": "staff profile page abstract" | |||
} | |||
], | |||
"email": "jsmith@usgs.gov", | |||
"hasCredential": [ | |||
{ | |||
"@type": "EducationalOccupationalCredential", | |||
"name": "\u200bPh.D. Environmental and Water Resources Systems Engineering, Cornell University, 2019" | |||
}, | |||
{ | |||
"@type": "EducationalOccupationalCredential", | |||
"name": "M.S. Environmental and Water Resources Systems Engineering, Cornell University, 2016" | |||
}, | |||
{ | |||
"@type": "EducationalOccupationalCredential", | |||
"name": "B.S. Environmental Engineering, Clarkson University, 2013" | |||
} | |||
], | |||
"hasOccupation": [ | |||
{ | |||
identifier: | "@type": "OrganizationalRole", | ||
"affiliatedOrganization": { | |||
propertyID: | "@type": "Organization", | ||
value: | "name": "Water Resources Mission Area", | ||
"url": "https://www.usgs.gov/mission-areas/water-resources" | |||
}, | |||
"roleName": "Machine Learning Specialist", | |||
"startDate": "2024-05-12T15:17:41.378526" | |||
} | |||
propertyID: | ], | ||
value: | "identifier": [ | ||
{ | |||
"@type": "PropertyValue", | |||
"propertyID": "GeoKB", | |||
"value": "https://geokb.wikibase.cloud/entity/Q49376" | |||
}, | |||
{ | |||
"@type": "PropertyValue", | |||
"propertyID": "ORCID", | |||
"value": "0000-0003-3124-8255" | |||
} | |||
], | |||
"jobTitle": "Machine Learning Specialist", | |||
"knowsAbout": [ | |||
{ | |||
"@type": "Thing", | |||
"additionalType": "self-claimed expertise", | |||
"name": "Model Diagnostics" | |||
}, | |||
{ | |||
"@type": "Thing", | |||
"additionalType": "self-claimed expertise", | |||
"name": "Machine Learning" | |||
}, | |||
{ | |||
"@type": "Thing", | |||
"additionalType": "self-claimed expertise", | |||
"name": "Hydrologic Statistics" | |||
}, | |||
{ | |||
"@type": "Thing", | |||
"additionalType": "self-claimed expertise", | |||
"name": "Optimization" | |||
}, | |||
{ | |||
"@type": "Thing", | |||
"additionalType": "self-claimed expertise", | |||
"name": "Water Resource Management" | |||
}, | |||
{ | |||
"@type": "Thing", | |||
"additionalType": "self-claimed expertise", | |||
name: | "name": "Surface Water" | ||
}, | |||
{ | |||
"@type": "Thing", | |||
"additionalType": "self-claimed expertise", | |||
"name": "Geothermal Resource Assessment" | |||
}, | |||
{ | |||
"@type": "Thing", | |||
"additionalType": "self-claimed expertise", | |||
"name": "Heat Flow" | |||
} | |||
], | |||
"memberOf": { | |||
"@type": "OrganizationalRole", | |||
"member": { | |||
"@type": "Organization", | |||
"name": "U.S. Geological Survey" | |||
}, | |||
"name": "staff member", | |||
"startDate": "2024-05-12T15:17:41.376020" | |||
}, | |||
"name": "Jared Smith", | |||
"url": "https://www.usgs.gov/staff-profiles/jared-smith", | |||
"dateModified": "2024-05-12T00:00:00Z" | |||
}, | |||
"ORCID": { | |||
"@context": "http://schema.org", | |||
"@id": "https://orcid.org/0000-0003-3124-8255", | |||
"@reverse": { | |||
"creator": [ | |||
{ | |||
"@id": "https://doi.org/10.1002/lno.12549", | |||
"@type": "CreativeWork", | |||
"identifier": { | |||
"@type": "PropertyValue", | |||
"propertyID": "doi", | |||
"value": "10.1002/lno.12549" | |||
}, | |||
"name": "Deep learning of estuary salinity dynamics is physically accurate at a fraction of hydrodynamic model computational cost" | |||
}, | |||
{ | |||
"@id": "https://doi.org/10.1029/2022wr034377", | |||
"@type": "CreativeWork", | |||
"identifier": { | |||
"@type": "PropertyValue", | |||
"propertyID": "doi", | |||
"value": "10.1029/2022wr034377" | |||
}, | |||
"name": "Considering Uncertainty of Historical Ice Jam Flood Records in a Bayesian Frequency Analysis for the Peace\u2010Athabasca Delta" | |||
}, | |||
{ | |||
"@id": "https://doi.org/10.1109/access.2024.3378752", | |||
"@type": "CreativeWork", | |||
"identifier": { | |||
"@type": "PropertyValue", | |||
"propertyID": "doi", | |||
"value": "10.1109/access.2024.3378752" | |||
}, | |||
"name": "New Diagnostic Assessment of MCMC Algorithm Effectiveness, Efficiency, Reliability, and Controllability" | |||
}, | |||
{ | |||
"@id": "https://doi.org/10.5194/hess-26-2519-2022", | |||
"@type": "CreativeWork", | |||
"identifier": { | |||
"@type": "PropertyValue", | |||
"propertyID": "doi", | |||
"value": "10.5194/hess-26-2519-2022" | |||
}, | |||
"name": "Guidance on evaluating parametric model uncertainty at decision-relevant scales" | |||
}, | |||
{ | |||
"@id": "https://doi.org/10.1139/cjce-2018-0409", | |||
"@type": "CreativeWork", | |||
"identifier": [ | |||
{ | |||
"@type": "PropertyValue", | |||
"propertyID": "doi", | |||
"value": "10.1139/cjce-2018-0409" | |||
}, | |||
{ | |||
"@type": "PropertyValue", | |||
"propertyID": "eid", | |||
"value": "2-s2.0-85062689531" | |||
} | |||
], | |||
"name": "Discussion of \u201cfrequency of ice-jam flooding of peace-athabasca delta\u201d" | |||
}, | |||
{ | |||
"@type": "CreativeWork", | |||
"identifier": { | |||
"@type": "PropertyValue", | |||
"propertyID": "eid", | |||
"value": "2-s2.0-85059895692" | |||
}, | |||
"name": "Earth source heat: Feasibility of deep direct-use of geothermal energy on the Cornell campus" | |||
}, | |||
{ | |||
"@type": "CreativeWork", | |||
"identifier": { | |||
"@type": "PropertyValue", | |||
"propertyID": "eid", | |||
"value": "2-s2.0-85018588114" | |||
}, | |||
"name": "The importance of caprock heating for geothermal heat in place calculations: An appalachian basin case study" | |||
}, | |||
{ | |||
"@id": "https://doi.org/10.1130/ges00499.1", | |||
"@type": "CreativeWork", | |||
"identifier": [ | |||
{ | |||
"@type": "PropertyValue", | |||
"propertyID": "eid", | |||
"value": "2-s2.0-84947815457" | |||
}, | |||
{ | |||
"@type": "PropertyValue", | |||
"propertyID": "doi", | |||
"value": "10.1130/ges00499.1" | |||
} | |||
], | |||
"name": "Geothermal energy characterization in the Appalachian Basin of New York and Pennsylvania" | |||
}, | |||
{ | |||
"@type": "CreativeWork", | |||
"identifier": { | |||
"@type": "PropertyValue", | |||
"propertyID": "eid", | |||
"value": "2-s2.0-84964001479" | |||
}, | |||
"name": "Low-Temperature geothermal energy characterization by play fairway analysis for the appalachian basin of New York, Pennsylvania and West Virginia" | |||
}, | |||
{ | |||
"@type": "CreativeWork", | |||
"identifier": { | |||
"@type": "PropertyValue", | |||
"propertyID": "eid", | |||
"value": "2-s2.0-84937960802" | |||
}, | |||
"name": "Geothermal energy characterization in the appalachian basin of New York and Pennsylvania" | |||
} | |||
] | |||
}, | |||
"@type": "Person", | |||
"address": { | |||
"@type": "PostalAddress", | |||
"addressCountry": "US" | |||
}, | |||
"affiliation": [ | |||
{ | |||
"@id": "grid.2865.9", | |||
"@type": "Organization", | |||
"name": "United States Geological Survey" | |||
display_name: | }, | ||
{ | |||
"@type": "Organization", | |||
"alternateName": "Engineering Systems and Environment", | |||
"identifier": { | |||
"@type": "PropertyValue", | |||
"propertyID": "RINGGOLD", | |||
"value": "2358" | |||
}, | |||
"name": "University of Virginia" | |||
} | |||
], | |||
"alumniOf": [ | |||
{ | |||
"@type": "Organization", | |||
"alternateName": "Civil and Environmental Engineering", | |||
"identifier": { | |||
"@type": "PropertyValue", | |||
"propertyID": "RINGGOLD", | |||
"value": "6704" | |||
}, | |||
"name": "Clarkson University" | |||
}, | |||
{ | |||
"@type": "Organization", | |||
"alternateName": "Civil and Environmental Engineering", | |||
"identifier": { | |||
"@type": "PropertyValue", | |||
"propertyID": "RINGGOLD", | |||
"value": "5922" | |||
}, | |||
"name": "Cornell University" | |||
} | |||
], | |||
"familyName": "Smith", | |||
"givenName": "Jared", | |||
"mainEntityOfPage": "https://orcid.org/0000-0003-3124-8255", | |||
"name": "Jared D. Smith" | |||
}, | |||
"OpenAlex": { | |||
"created_date": "2023-07-21", | |||
"display_name": "J. D. Smith", | |||
"display_name_alternatives": [ | |||
"Joe Smith", | |||
"Jared Smith", | |||
"Jared D. Smith", | |||
"J. Smith", | |||
"J. Denham Smith", | |||
"J. D. Smith" | |||
], | |||
"ids": { | |||
"openalex": "https://openalex.org/A5013373817", | |||
"orcid": "https://orcid.org/0000-0003-3124-8255" | |||
}, | |||
"last_known_institutions": [ | |||
{ | |||
"country_code": "US", | |||
"display_name": "United States Geological Survey", | |||
"id": "https://openalex.org/I1286329397", | |||
"lineage": [ | |||
"https://openalex.org/I1286329397", | |||
"https://openalex.org/I1335927249" | |||
], | |||
"ror": "https://ror.org/035a68863", | |||
"type": "government" | |||
} | |||
], | |||
"orcid": "https://orcid.org/0000-0003-3124-8255", | |||
"topics": [ | |||
{ | |||
"count": 35, | |||
"display_name": "Atmospheric Aerosols and their Impacts", | |||
"domain": { | |||
"display_name": "Physical Sciences", | |||
"id": "https://openalex.org/domains/3" | |||
}, | |||
"field": { | |||
"display_name": "Earth and Planetary Sciences", | |||
"id": "https://openalex.org/fields/19" | |||
}, | |||
"id": "https://openalex.org/T10075", | |||
"subfield": { | |||
"display_name": "Atmospheric Science", | |||
"id": "https://openalex.org/subfields/1902" | |||
} | |||
}, | |||
{ | |||
"count": 16, | |||
"display_name": "Health Effects of Air Pollution", | |||
"domain": { | |||
"display_name": "Physical Sciences", | |||
"id": "https://openalex.org/domains/3" | |||
}, | |||
"field": { | |||
"display_name": "Environmental Science", | |||
"id": "https://openalex.org/fields/23" | |||
}, | |||
"id": "https://openalex.org/T10190", | |||
"subfield": { | |||
"display_name": "Health, Toxicology and Mutagenesis", | |||
"id": "https://openalex.org/subfields/2307" | |||
} | |||
}, | |||
{ | |||
"count": 15, | |||
"display_name": "Quantum Coherence in Photosynthesis and Aqueous Systems", | |||
"domain": { | |||
"display_name": "Physical Sciences", | |||
"id": "https://openalex.org/domains/3" | |||
}, | |||
"field": { | |||
"display_name": "Physics and Astronomy", | |||
"id": "https://openalex.org/fields/31" | |||
}, | |||
"id": "https://openalex.org/T11177", | |||
"subfield": { | |||
"display_name": "Atomic and Molecular Physics, and Optics", | |||
"id": "https://openalex.org/subfields/3107" | |||
} | |||
}, | |||
{ | |||
"count": 12, | |||
"display_name": "Stratospheric Chemistry and Climate Change Impacts", | |||
"domain": { | |||
"display_name": "Physical Sciences", | |||
"id": "https://openalex.org/domains/3" | |||
}, | |||
"field": { | |||
"display_name": "Earth and Planetary Sciences", | |||
"id": "https://openalex.org/fields/19" | |||
}, | |||
"id": "https://openalex.org/T11320", | |||
"subfield": { | |||
"display_name": "Atmospheric Science", | |||
"id": "https://openalex.org/subfields/1902" | |||
} | |||
}, | |||
{ | |||
"count": 12, | |||
"display_name": "Hydrological Modeling and Water Resource Management", | |||
"domain": { | |||
"display_name": "Physical Sciences", | |||
"id": "https://openalex.org/domains/3" | |||
}, | |||
"field": { | |||
"display_name": "Environmental Science", | |||
"id": "https://openalex.org/fields/23" | |||
}, | |||
"id": "https://openalex.org/T10330", | |||
"subfield": { | |||
"display_name": "Water Science and Technology", | |||
"id": "https://openalex.org/subfields/2312" | |||
} | |||
}, | |||
{ | |||
"count": 8, | |||
"display_name": "Optimal Operation of Water Resources Systems", | |||
"domain": { | |||
"display_name": "Physical Sciences", | |||
"id": "https://openalex.org/domains/3" | |||
}, | |||
"field": { | |||
"display_name": "Engineering", | |||
"id": "https://openalex.org/fields/22" | |||
}, | |||
"id": "https://openalex.org/T10969", | |||
"subfield": { | |||
"display_name": "Ocean Engineering", | |||
"id": "https://openalex.org/subfields/2212" | |||
} | |||
}, | |||
{ | |||
"count": 7, | |||
"display_name": "Arctic Sea Ice Variability and Decline", | |||
"domain": { | |||
"display_name": "Physical Sciences", | |||
"id": "https://openalex.org/domains/3" | |||
}, | |||
"field": { | |||
"display_name": "Earth and Planetary Sciences", | |||
"id": "https://openalex.org/fields/19" | |||
}, | |||
"id": "https://openalex.org/T11459", | |||
"subfield": { | |||
"display_name": "Atmospheric Science", | |||
"id": "https://openalex.org/subfields/1902" | |||
} | |||
}, | |||
{ | |||
"count": 7, | |||
"display_name": "Groundwater Flow and Transport Modeling", | |||
"domain": { | |||
"display_name": "Physical Sciences", | |||
"id": "https://openalex.org/domains/3" | |||
}, | |||
"field": { | |||
"display_name": "Environmental Science", | |||
"id": "https://openalex.org/fields/23" | |||
}, | |||
"id": "https://openalex.org/T10894", | |||
"subfield": { | |||
"display_name": "Environmental Engineering", | |||
"id": "https://openalex.org/subfields/2305" | |||
} | |||
}, | |||
{ | |||
"count": 7, | |||
"display_name": "Low-Cost Air Quality Monitoring Systems", | |||
"domain": { | |||
"display_name": "Physical Sciences", | |||
"id": "https://openalex.org/domains/3" | |||
}, | |||
"field": { | |||
"display_name": "Environmental Science", | |||
"id": "https://openalex.org/fields/23" | |||
}, | |||
"id": "https://openalex.org/T12120", | |||
"subfield": { | |||
"display_name": "Environmental Engineering", | |||
"id": "https://openalex.org/subfields/2305" | |||
} | |||
}, | |||
{ | |||
"count": 6, | |||
"display_name": "Molecular Spectroscopic Databases and Laser Applications", | |||
"domain": { | |||
"display_name": "Physical Sciences", | |||
"id": "https://openalex.org/domains/3" | |||
}, | |||
"field": { | |||
"display_name": "Chemistry", | |||
"id": "https://openalex.org/fields/16" | |||
}, | |||
"id": "https://openalex.org/T11111", | |||
"subfield": { | |||
"display_name": "Spectroscopy", | |||
"id": "https://openalex.org/subfields/1607" | |||
} | |||
}, | |||
{ | |||
"count": 6, | |||
"display_name": "Aerosols' Impact on Climate and Hydrological Cycle", | |||
"domain": { | |||
"display_name": "Physical Sciences", | |||
"id": "https://openalex.org/domains/3" | |||
}, | |||
"field": { | |||
"display_name": "Environmental Science", | |||
"id": "https://openalex.org/fields/23" | |||
}, | |||
"id": "https://openalex.org/T10347", | |||
"subfield": { | |||
"display_name": "Global and Planetary Change", | |||
"id": "https://openalex.org/subfields/2306" | |||
} | |||
}, | |||
{ | |||
"count": 6, | |||
"display_name": "Chiroptical Spectroscopy in Organic Compound Analysis", | |||
"domain": { | |||
"display_name": "Physical Sciences", | |||
"id": "https://openalex.org/domains/3" | |||
}, | |||
"field": { | |||
"display_name": "Chemistry", | |||
"id": "https://openalex.org/fields/16" | |||
}, | |||
"id": "https://openalex.org/T12748", | |||
"subfield": { | |||
"display_name": "Spectroscopy", | |||
"id": "https://openalex.org/subfields/1607" | |||
} | |||
}, | |||
{ | |||
"count": 6, | |||
"display_name": "Advanced Techniques in Reservoir Management", | |||
"domain": { | |||
"display_name": "Physical Sciences", | |||
"id": "https://openalex.org/domains/3" | |||
}, | |||
"field": { | |||
"display_name": "Engineering", | |||
"id": "https://openalex.org/fields/22" | |||
}, | |||
"id": "https://openalex.org/T11801", | |||
"subfield": { | |||
"display_name": "Ocean Engineering", | |||
"id": "https://openalex.org/subfields/2212" | |||
} | |||
}, | |||
{ | |||
"count": 5, | |||
"display_name": "Catalytic Nanomaterials", | |||
"domain": { | |||
"display_name": "Physical Sciences", | |||
"id": "https://openalex.org/domains/3" | |||
}, | |||
"field": { | |||
"display_name": "Materials Science", | |||
"id": "https://openalex.org/fields/25" | |||
}, | |||
"id": "https://openalex.org/T10192", | |||
"subfield": { | |||
"display_name": "Materials Chemistry", | |||
"id": "https://openalex.org/subfields/2505" | |||
} | |||
}, | |||
{ | |||
"count": 5, | |||
"display_name": "Characterization of Shale Gas Pore Structure", | |||
"domain": { | |||
"display_name": "Physical Sciences", | |||
"id": "https://openalex.org/domains/3" | |||
}, | |||
"field": { | |||
"display_name": "Engineering", | |||
"id": "https://openalex.org/fields/22" | |||
}, | |||
"id": "https://openalex.org/T10399", | |||
"subfield": { | |||
"display_name": "Mechanics of Materials", | |||
"id": "https://openalex.org/subfields/2211" | |||
} | |||
}, | |||
{ | |||
"count": 5, | |||
"display_name": "Impacts of Climate Change on Glaciers and Water Availability", | |||
"domain": { | |||
"display_name": "Physical Sciences", | |||
"id": "https://openalex.org/domains/3" | |||
}, | |||
"field": { | |||
"display_name": "Earth and Planetary Sciences", | |||
"id": "https://openalex.org/fields/19" | |||
}, | |||
"id": "https://openalex.org/T10644", | |||
"subfield": { | |||
"display_name": "Atmospheric Science", | |||
"id": "https://openalex.org/subfields/1902" | |||
} | |||
}, | |||
{ | |||
"count": 5, | |||
"display_name": "Arctic Permafrost Dynamics and Climate Change", | |||
"domain": { | |||
"display_name": "Physical Sciences", | |||
"id": "https://openalex.org/domains/3" | |||
}, | |||
"field": { | |||
"display_name": "Earth and Planetary Sciences", | |||
"id": "https://openalex.org/fields/19" | |||
}, | |||
"id": "https://openalex.org/T11333", | |||
"subfield": { | |||
"display_name": "Atmospheric Science", | |||
"id": "https://openalex.org/subfields/1902" | |||
} | |||
}, | |||
{ | |||
"count": 5, | |||
"display_name": "Excited-State Proton Transfer Mechanisms and Applications", | |||
"domain": { | |||
"display_name": "Physical Sciences", | |||
"id": "https://openalex.org/domains/3" | |||
}, | |||
"field": { | |||
"display_name": "Chemistry", | |||
"id": "https://openalex.org/fields/16" | |||
}, | |||
"id": "https://openalex.org/T11129", | |||
"subfield": { | |||
"display_name": "Physical and Theoretical Chemistry", | |||
"id": "https://openalex.org/subfields/1606" | |||
} | |||
}, | |||
{ | |||
"count": 4, | |||
"display_name": "Quantum Effects in Helium Nanodroplets and Solids", | |||
"domain": { | |||
"display_name": "Physical Sciences", | |||
"id": "https://openalex.org/domains/3" | |||
}, | |||
"field": { | |||
"display_name": "Physics and Astronomy", | |||
"id": "https://openalex.org/fields/31" | |||
}, | |||
"id": "https://openalex.org/T11965", | |||
"subfield": { | |||
"display_name": "Atomic and Molecular Physics, and Optics", | |||
"id": "https://openalex.org/subfields/3107" | |||
} | |||
}, | |||
{ | |||
"count": 4, | |||
"display_name": "Carbon Dioxide Sequestration in Geological Formations", | |||
"domain": { | |||
"display_name": "Physical Sciences", | |||
"id": "https://openalex.org/domains/3" | |||
}, | |||
"field": { | |||
"display_name": "Environmental Science", | |||
"id": "https://openalex.org/fields/23" | |||
}, | |||
"id": "https://openalex.org/T11302", | |||
"subfield": { | |||
"display_name": "Environmental Engineering", | |||
"id": "https://openalex.org/subfields/2305" | |||
} | |||
}, | |||
{ | |||
"count": 4, | |||
"display_name": "Environmental Impacts of Fukushima Nuclear Disaster", | |||
"domain": { | |||
"display_name": "Physical Sciences", | |||
"id": "https://openalex.org/domains/3" | |||
}, | |||
"field": { | |||
"display_name": "Environmental Science", | |||
"id": "https://openalex.org/fields/23" | |||
}, | |||
"id": "https://openalex.org/T11089", | |||
"subfield": { | |||
"display_name": "Global and Planetary Change", | |||
"id": "https://openalex.org/subfields/2306" | |||
} | |||
}, | |||
{ | |||
"count": 4, | |||
"display_name": "Geothermal Energy Technology and Applications", | |||
"domain": { | |||
"display_name": "Physical Sciences", | |||
"id": "https://openalex.org/domains/3" | |||
}, | |||
"field": { | |||
"display_name": "Energy", | |||
"id": "https://openalex.org/fields/21" | |||
}, | |||
"id": "https://openalex.org/T11225", | |||
"subfield": { | |||
"display_name": "Renewable Energy, Sustainability and the Environment", | |||
"id": "https://openalex.org/subfields/2105" | |||
} | |||
}, | |||
{ | |||
"count": 4, | |||
"display_name": "Machine Learning for Mineral Prospectivity Mapping", | |||
"domain": { | |||
"display_name": "Physical Sciences", | |||
"id": "https://openalex.org/domains/3" | |||
}, | |||
"field": { | |||
"display_name": "Computer Science", | |||
"id": "https://openalex.org/fields/17" | |||
}, | |||
"id": "https://openalex.org/T12157", | |||
"subfield": { | |||
"display_name": "Artificial Intelligence", | |||
"id": "https://openalex.org/subfields/1702" | |||
} | |||
}, | |||
{ | |||
"count": 4, | |||
"display_name": "Advancements in Density Functional Theory", | |||
"domain": { | |||
"display_name": "Physical Sciences", | |||
"id": "https://openalex.org/domains/3" | |||
}, | |||
"field": { | |||
"display_name": "Physics and Astronomy", | |||
"id": "https://openalex.org/fields/31" | |||
}, | |||
"id": "https://openalex.org/T10002", | |||
"subfield": { | |||
"display_name": "Atomic and Molecular Physics, and Optics", | |||
"id": "https://openalex.org/subfields/3107" | |||
} | |||
}, | |||
{ | |||
"count": 4, | |||
"display_name": "Mathematical Topics in Collisional Kinetic Theory", | |||
"domain": { | |||
"display_name": "Physical Sciences", | |||
"id": "https://openalex.org/domains/3" | |||
}, | |||
"field": { | |||
"display_name": "Mathematics", | |||
"id": "https://openalex.org/fields/26" | |||
}, | |||
"id": "https://openalex.org/T11012", | |||
"subfield": { | |||
"display_name": "Applied Mathematics", | |||
"id": "https://openalex.org/subfields/2604" | |||
} | |||
} | |||
], | |||
"updated_date": "2024-05-21T19:48:33.274641" | |||
} | |||
} |
Latest revision as of 21:21, 22 September 2024
{
"USGS Staff Profile": { "@context": "https://schema.org", "@type": "Person", "affiliation": [], "description": [ { "@type": "TextObject", "abstract": "Machine Learning Specialist with the Water Resources Mission Area", "additionalType": "short description" }, { "@type": "TextObject", "abstract": "Jared D. Smith, Ph.D., is a Machine Learning Specialist in the USGS Water Resources Mission Area. He is based in Reston, VA.", "additionalType": "staff profile page introductory statement" }, { "@type": "TextObject", "abstract": "Jared has a background in environmental systems engineering, spatial data analysis, and statistics. His previous research has coupled physical and mathematical models with statistical analyses to inform planning and management decisions for environmental, earth-energy, and water resources systems. Jared joined the USGS in 2021 after completing a postdoc at The University of Virginia, where he developed green infrastructure portfolio optimizations that were designed to be robust to Bayesian-estimated parametric uncertainty of a watershed model. Jared completed his Ph.D. at Cornell University, where his research addressed Appalachian Basin geothermal resource assessment and subsequent uncertainty assessments for deep geothermal district heating projects at the Cornell and West Virginia University campuses. Previous work has also addressed ice jam flood frequency analysis under climate change, applied to the Peace-Athabasca Delta in Canada.", "additionalType": "personal statement" }, { "@type": "TextObject", "abstract": "\u200bCluster Analysis and Prediction of Flood Flow Metrics for Minimally Altered Catchments in the Conterminous United States, HydroML Symposium 2022", "additionalType": "staff profile page abstract" }, { "@type": "TextObject", "abstract": "Discovering Flood Regions and Predicting Flood Flow Metrics to Inform Bridge Scour Studies in the Conterminous United States, National Hydraulic Engineering Conference, 2022", "additionalType": "staff profile page abstract" } ], "email": "jsmith@usgs.gov", "hasCredential": [ { "@type": "EducationalOccupationalCredential", "name": "\u200bPh.D. Environmental and Water Resources Systems Engineering, Cornell University, 2019" }, { "@type": "EducationalOccupationalCredential", "name": "M.S. Environmental and Water Resources Systems Engineering, Cornell University, 2016" }, { "@type": "EducationalOccupationalCredential", "name": "B.S. Environmental Engineering, Clarkson University, 2013" } ], "hasOccupation": [ { "@type": "OrganizationalRole", "affiliatedOrganization": { "@type": "Organization", "name": "Water Resources Mission Area", "url": "https://www.usgs.gov/mission-areas/water-resources" }, "roleName": "Machine Learning Specialist", "startDate": "2024-05-12T15:17:41.378526" } ], "identifier": [ { "@type": "PropertyValue", "propertyID": "GeoKB", "value": "https://geokb.wikibase.cloud/entity/Q49376" }, { "@type": "PropertyValue", "propertyID": "ORCID", "value": "0000-0003-3124-8255" } ], "jobTitle": "Machine Learning Specialist", "knowsAbout": [ { "@type": "Thing", "additionalType": "self-claimed expertise", "name": "Model Diagnostics" }, { "@type": "Thing", "additionalType": "self-claimed expertise", "name": "Machine Learning" }, { "@type": "Thing", "additionalType": "self-claimed expertise", "name": "Hydrologic Statistics" }, { "@type": "Thing", "additionalType": "self-claimed expertise", "name": "Optimization" }, { "@type": "Thing", "additionalType": "self-claimed expertise", "name": "Water Resource Management" }, { "@type": "Thing", "additionalType": "self-claimed expertise", "name": "Surface Water" }, { "@type": "Thing", "additionalType": "self-claimed expertise", "name": "Geothermal Resource Assessment" }, { "@type": "Thing", "additionalType": "self-claimed expertise", "name": "Heat Flow" } ], "memberOf": { "@type": "OrganizationalRole", "member": { "@type": "Organization", "name": "U.S. Geological Survey" }, "name": "staff member", "startDate": "2024-05-12T15:17:41.376020" }, "name": "Jared Smith", "url": "https://www.usgs.gov/staff-profiles/jared-smith", "dateModified": "2024-05-12T00:00:00Z" }, "ORCID": { "@context": "http://schema.org", "@id": "https://orcid.org/0000-0003-3124-8255", "@reverse": { "creator": [ { "@id": "https://doi.org/10.1002/lno.12549", "@type": "CreativeWork", "identifier": { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1002/lno.12549" }, "name": "Deep learning of estuary salinity dynamics is physically accurate at a fraction of hydrodynamic model computational cost" }, { "@id": "https://doi.org/10.1029/2022wr034377", "@type": "CreativeWork", "identifier": { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1029/2022wr034377" }, "name": "Considering Uncertainty of Historical Ice Jam Flood Records in a Bayesian Frequency Analysis for the Peace\u2010Athabasca Delta" }, { "@id": "https://doi.org/10.1109/access.2024.3378752", "@type": "CreativeWork", "identifier": { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1109/access.2024.3378752" }, "name": "New Diagnostic Assessment of MCMC Algorithm Effectiveness, Efficiency, Reliability, and Controllability" }, { "@id": "https://doi.org/10.5194/hess-26-2519-2022", "@type": "CreativeWork", "identifier": { "@type": "PropertyValue", "propertyID": "doi", "value": "10.5194/hess-26-2519-2022" }, "name": "Guidance on evaluating parametric model uncertainty at decision-relevant scales" }, { "@id": "https://doi.org/10.1139/cjce-2018-0409", "@type": "CreativeWork", "identifier": [ { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1139/cjce-2018-0409" }, { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-85062689531" } ], "name": "Discussion of \u201cfrequency of ice-jam flooding of peace-athabasca delta\u201d" }, { "@type": "CreativeWork", "identifier": { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-85059895692" }, "name": "Earth source heat: Feasibility of deep direct-use of geothermal energy on the Cornell campus" }, { "@type": "CreativeWork", "identifier": { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-85018588114" }, "name": "The importance of caprock heating for geothermal heat in place calculations: An appalachian basin case study" }, { "@id": "https://doi.org/10.1130/ges00499.1", "@type": "CreativeWork", "identifier": [ { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-84947815457" }, { "@type": "PropertyValue", "propertyID": "doi", "value": "10.1130/ges00499.1" } ], "name": "Geothermal energy characterization in the Appalachian Basin of New York and Pennsylvania" }, { "@type": "CreativeWork", "identifier": { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-84964001479" }, "name": "Low-Temperature geothermal energy characterization by play fairway analysis for the appalachian basin of New York, Pennsylvania and West Virginia" }, { "@type": "CreativeWork", "identifier": { "@type": "PropertyValue", "propertyID": "eid", "value": "2-s2.0-84937960802" }, "name": "Geothermal energy characterization in the appalachian basin of New York and Pennsylvania" } ] }, "@type": "Person", "address": { "@type": "PostalAddress", "addressCountry": "US" }, "affiliation": [ { "@id": "grid.2865.9", "@type": "Organization", "name": "United States Geological Survey" }, { "@type": "Organization", "alternateName": "Engineering Systems and Environment", "identifier": { "@type": "PropertyValue", "propertyID": "RINGGOLD", "value": "2358" }, "name": "University of Virginia" } ], "alumniOf": [ { "@type": "Organization", "alternateName": "Civil and Environmental Engineering", "identifier": { "@type": "PropertyValue", "propertyID": "RINGGOLD", "value": "6704" }, "name": "Clarkson University" }, { "@type": "Organization", "alternateName": "Civil and Environmental Engineering", "identifier": { "@type": "PropertyValue", "propertyID": "RINGGOLD", "value": "5922" }, "name": "Cornell University" } ], "familyName": "Smith", "givenName": "Jared", "mainEntityOfPage": "https://orcid.org/0000-0003-3124-8255", "name": "Jared D. Smith" }, "OpenAlex": { "created_date": "2023-07-21", "display_name": "J. D. Smith", "display_name_alternatives": [ "Joe Smith", "Jared Smith", "Jared D. Smith", "J. Smith", "J. Denham Smith", "J. D. Smith" ], "ids": { "openalex": "https://openalex.org/A5013373817", "orcid": "https://orcid.org/0000-0003-3124-8255" }, "last_known_institutions": [ { "country_code": "US", "display_name": "United States Geological Survey", "id": "https://openalex.org/I1286329397", "lineage": [ "https://openalex.org/I1286329397", "https://openalex.org/I1335927249" ], "ror": "https://ror.org/035a68863", "type": "government" } ], "orcid": "https://orcid.org/0000-0003-3124-8255", "topics": [ { "count": 35, "display_name": "Atmospheric Aerosols and their Impacts", "domain": { "display_name": "Physical Sciences", "id": "https://openalex.org/domains/3" }, "field": { "display_name": "Earth and Planetary Sciences", "id": "https://openalex.org/fields/19" }, "id": "https://openalex.org/T10075", "subfield": { "display_name": "Atmospheric Science", "id": "https://openalex.org/subfields/1902" } }, { "count": 16, "display_name": "Health Effects of Air Pollution", "domain": { "display_name": "Physical Sciences", "id": "https://openalex.org/domains/3" }, "field": { "display_name": "Environmental Science", "id": "https://openalex.org/fields/23" }, "id": "https://openalex.org/T10190", "subfield": { "display_name": "Health, Toxicology and Mutagenesis", "id": "https://openalex.org/subfields/2307" } }, { "count": 15, "display_name": "Quantum Coherence in Photosynthesis and Aqueous Systems", "domain": { "display_name": "Physical Sciences", "id": "https://openalex.org/domains/3" }, "field": { "display_name": "Physics and Astronomy", "id": "https://openalex.org/fields/31" }, "id": "https://openalex.org/T11177", "subfield": { "display_name": "Atomic and Molecular Physics, and Optics", "id": "https://openalex.org/subfields/3107" } }, { "count": 12, "display_name": "Stratospheric Chemistry and Climate Change Impacts", "domain": { "display_name": "Physical Sciences", "id": "https://openalex.org/domains/3" }, "field": { "display_name": "Earth and Planetary Sciences", "id": "https://openalex.org/fields/19" }, "id": "https://openalex.org/T11320", "subfield": { "display_name": "Atmospheric Science", "id": "https://openalex.org/subfields/1902" } }, { "count": 12, "display_name": "Hydrological Modeling and Water Resource Management", "domain": { "display_name": "Physical Sciences", "id": "https://openalex.org/domains/3" }, "field": { "display_name": "Environmental Science", "id": "https://openalex.org/fields/23" }, "id": "https://openalex.org/T10330", "subfield": { "display_name": "Water Science and Technology", "id": "https://openalex.org/subfields/2312" } }, { "count": 8, "display_name": "Optimal Operation of Water Resources Systems", "domain": { "display_name": "Physical Sciences", "id": "https://openalex.org/domains/3" }, "field": { "display_name": "Engineering", "id": "https://openalex.org/fields/22" }, "id": "https://openalex.org/T10969", "subfield": { "display_name": "Ocean Engineering", "id": "https://openalex.org/subfields/2212" } }, { "count": 7, "display_name": "Arctic Sea Ice Variability and Decline", "domain": { "display_name": "Physical Sciences", "id": "https://openalex.org/domains/3" }, "field": { "display_name": "Earth and Planetary Sciences", "id": "https://openalex.org/fields/19" }, "id": "https://openalex.org/T11459", "subfield": { "display_name": "Atmospheric Science", "id": "https://openalex.org/subfields/1902" } }, { "count": 7, "display_name": "Groundwater Flow and Transport Modeling", "domain": { "display_name": "Physical Sciences", "id": "https://openalex.org/domains/3" }, "field": { "display_name": "Environmental Science", "id": "https://openalex.org/fields/23" }, "id": "https://openalex.org/T10894", "subfield": { "display_name": "Environmental Engineering", "id": "https://openalex.org/subfields/2305" } }, { "count": 7, "display_name": "Low-Cost Air Quality Monitoring Systems", "domain": { "display_name": "Physical Sciences", "id": "https://openalex.org/domains/3" }, "field": { "display_name": "Environmental Science", "id": "https://openalex.org/fields/23" }, "id": "https://openalex.org/T12120", "subfield": { "display_name": "Environmental Engineering", "id": "https://openalex.org/subfields/2305" } }, { "count": 6, "display_name": "Molecular Spectroscopic Databases and Laser Applications", "domain": { "display_name": "Physical Sciences", "id": "https://openalex.org/domains/3" }, "field": { "display_name": "Chemistry", "id": "https://openalex.org/fields/16" }, "id": "https://openalex.org/T11111", "subfield": { "display_name": "Spectroscopy", "id": "https://openalex.org/subfields/1607" } }, { "count": 6, "display_name": "Aerosols' Impact on Climate and Hydrological Cycle", "domain": { "display_name": "Physical Sciences", "id": "https://openalex.org/domains/3" }, "field": { "display_name": "Environmental Science", "id": "https://openalex.org/fields/23" }, "id": "https://openalex.org/T10347", "subfield": { "display_name": "Global and Planetary Change", "id": "https://openalex.org/subfields/2306" } }, { "count": 6, "display_name": "Chiroptical Spectroscopy in Organic Compound Analysis", "domain": { "display_name": "Physical Sciences", "id": "https://openalex.org/domains/3" }, "field": { "display_name": "Chemistry", "id": "https://openalex.org/fields/16" }, "id": "https://openalex.org/T12748", "subfield": { "display_name": "Spectroscopy", "id": "https://openalex.org/subfields/1607" } }, { "count": 6, "display_name": "Advanced Techniques in Reservoir Management", "domain": { "display_name": "Physical Sciences", "id": "https://openalex.org/domains/3" }, "field": { "display_name": "Engineering", "id": "https://openalex.org/fields/22" }, "id": "https://openalex.org/T11801", "subfield": { "display_name": "Ocean Engineering", "id": "https://openalex.org/subfields/2212" } }, { "count": 5, "display_name": "Catalytic Nanomaterials", "domain": { "display_name": "Physical Sciences", "id": "https://openalex.org/domains/3" }, "field": { "display_name": "Materials Science", "id": "https://openalex.org/fields/25" }, "id": "https://openalex.org/T10192", "subfield": { "display_name": "Materials Chemistry", "id": "https://openalex.org/subfields/2505" } }, { "count": 5, "display_name": "Characterization of Shale Gas Pore Structure", "domain": { "display_name": "Physical Sciences", "id": "https://openalex.org/domains/3" }, "field": { "display_name": "Engineering", "id": "https://openalex.org/fields/22" }, "id": "https://openalex.org/T10399", "subfield": { "display_name": "Mechanics of Materials", "id": "https://openalex.org/subfields/2211" } }, { "count": 5, "display_name": "Impacts of Climate Change on Glaciers and Water Availability", "domain": { "display_name": "Physical Sciences", "id": "https://openalex.org/domains/3" }, "field": { "display_name": "Earth and Planetary Sciences", "id": "https://openalex.org/fields/19" }, "id": "https://openalex.org/T10644", "subfield": { "display_name": "Atmospheric Science", "id": "https://openalex.org/subfields/1902" } }, { "count": 5, "display_name": "Arctic Permafrost Dynamics and Climate Change", "domain": { "display_name": "Physical Sciences", "id": "https://openalex.org/domains/3" }, "field": { "display_name": "Earth and Planetary Sciences", "id": "https://openalex.org/fields/19" }, "id": "https://openalex.org/T11333", "subfield": { "display_name": "Atmospheric Science", "id": "https://openalex.org/subfields/1902" } }, { "count": 5, "display_name": "Excited-State Proton Transfer Mechanisms and Applications", "domain": { "display_name": "Physical Sciences", "id": "https://openalex.org/domains/3" }, "field": { "display_name": "Chemistry", "id": "https://openalex.org/fields/16" }, "id": "https://openalex.org/T11129", "subfield": { "display_name": "Physical and Theoretical Chemistry", "id": "https://openalex.org/subfields/1606" } }, { "count": 4, "display_name": "Quantum Effects in Helium Nanodroplets and Solids", "domain": { "display_name": "Physical Sciences", "id": "https://openalex.org/domains/3" }, "field": { "display_name": "Physics and Astronomy", "id": "https://openalex.org/fields/31" }, "id": "https://openalex.org/T11965", "subfield": { "display_name": "Atomic and Molecular Physics, and Optics", "id": "https://openalex.org/subfields/3107" } }, { "count": 4, "display_name": "Carbon Dioxide Sequestration in Geological Formations", "domain": { "display_name": "Physical Sciences", "id": "https://openalex.org/domains/3" }, "field": { "display_name": "Environmental Science", "id": "https://openalex.org/fields/23" }, "id": "https://openalex.org/T11302", "subfield": { "display_name": "Environmental Engineering", "id": "https://openalex.org/subfields/2305" } }, { "count": 4, "display_name": "Environmental Impacts of Fukushima Nuclear Disaster", "domain": { "display_name": "Physical Sciences", "id": "https://openalex.org/domains/3" }, "field": { "display_name": "Environmental Science", "id": "https://openalex.org/fields/23" }, "id": "https://openalex.org/T11089", "subfield": { "display_name": "Global and Planetary Change", "id": "https://openalex.org/subfields/2306" } }, { "count": 4, "display_name": "Geothermal Energy Technology and Applications", "domain": { "display_name": "Physical Sciences", "id": "https://openalex.org/domains/3" }, "field": { "display_name": "Energy", "id": "https://openalex.org/fields/21" }, "id": "https://openalex.org/T11225", "subfield": { "display_name": "Renewable Energy, Sustainability and the Environment", "id": "https://openalex.org/subfields/2105" } }, { "count": 4, "display_name": "Machine Learning for Mineral Prospectivity Mapping", "domain": { "display_name": "Physical Sciences", "id": "https://openalex.org/domains/3" }, "field": { "display_name": "Computer Science", "id": "https://openalex.org/fields/17" }, "id": "https://openalex.org/T12157", "subfield": { "display_name": "Artificial Intelligence", "id": "https://openalex.org/subfields/1702" } }, { "count": 4, "display_name": "Advancements in Density Functional Theory", "domain": { "display_name": "Physical Sciences", "id": "https://openalex.org/domains/3" }, "field": { "display_name": "Physics and Astronomy", "id": "https://openalex.org/fields/31" }, "id": "https://openalex.org/T10002", "subfield": { "display_name": "Atomic and Molecular Physics, and Optics", "id": "https://openalex.org/subfields/3107" } }, { "count": 4, "display_name": "Mathematical Topics in Collisional Kinetic Theory", "domain": { "display_name": "Physical Sciences", "id": "https://openalex.org/domains/3" }, "field": { "display_name": "Mathematics", "id": "https://openalex.org/fields/26" }, "id": "https://openalex.org/T11012", "subfield": { "display_name": "Applied Mathematics", "id": "https://openalex.org/subfields/2604" } } ], "updated_date": "2024-05-21T19:48:33.274641" }
}