Item talk:Q46207: Difference between revisions
From geokb
No edit summary |
No edit summary |
||
Line 1: | Line 1: | ||
ORCID: | |||
'@context': http://schema.org | |||
'@id': https://orcid.org/0000-0002-5335-0720 | |||
'@reverse': | |||
creator: | |||
- '@id': https://doi.org/10.3390/rs14091978 | |||
'@type': CreativeWork | |||
identifier: | |||
'@type': PropertyValue | |||
propertyID: doi | |||
value: 10.3390/rs14091978 | |||
name: The Applicability of Time-Integrated Unit Stream Power for Estimating | |||
Bridge Pier Scour Using Noncontact Methods in a Gravel-Bed River | |||
- '@id': https://doi.org/10.1109/tgrs.2021.3117509 | |||
'@type': CreativeWork | |||
identifier: | |||
'@type': PropertyValue | |||
propertyID: doi | |||
value: 10.1109/tgrs.2021.3117509 | |||
name: Snow Depth Retrieval With an Autonomous UAV-Mounted Software-Defined Radar | |||
- '@id': https://doi.org/10.1016/j.jhydrol.2021.126809 | |||
'@type': CreativeWork | |||
identifier: | |||
'@type': PropertyValue | |||
propertyID: doi | |||
value: 10.1016/j.jhydrol.2021.126809 | |||
name: Uncertainty in Remote Sensing of Streams using Noncontact Radars | |||
- '@id': https://doi.org/10.5066/f7vt1rdh | |||
'@type': CreativeWork | |||
identifier: | |||
'@type': PropertyValue | |||
propertyID: doi | |||
value: 10.5066/f7vt1rdh | |||
name: Near-field remotely sensed streamflow, channel bathymetry, and floodplain | |||
topography | |||
USGS Staff Profile: | USGS Staff Profile: | ||
'@context': https://schema.org | '@context': https://schema.org |
Revision as of 14:54, 23 May 2024
ORCID:
'@context': http://schema.org '@id': https://orcid.org/0000-0002-5335-0720 '@reverse': creator: - '@id': https://doi.org/10.3390/rs14091978 '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.3390/rs14091978 name: The Applicability of Time-Integrated Unit Stream Power for Estimating Bridge Pier Scour Using Noncontact Methods in a Gravel-Bed River - '@id': https://doi.org/10.1109/tgrs.2021.3117509 '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.1109/tgrs.2021.3117509 name: Snow Depth Retrieval With an Autonomous UAV-Mounted Software-Defined Radar - '@id': https://doi.org/10.1016/j.jhydrol.2021.126809 '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.1016/j.jhydrol.2021.126809 name: Uncertainty in Remote Sensing of Streams using Noncontact Radars - '@id': https://doi.org/10.5066/f7vt1rdh '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.5066/f7vt1rdh name: Near-field remotely sensed streamflow, channel bathymetry, and floodplain topography measurements in the Arkansas River at Parkdale, CO collected March 2018 - '@id': https://doi.org/10.3390/rs12203317 '@type': CreativeWork identifier: - '@type': PropertyValue propertyID: eid value: 2-s2.0-85092799339 - '@type': PropertyValue propertyID: doi value: 10.3390/rs12203317 name: 'QCam: sUAS-Based Doppler Radar for Measuring River Discharge' - '@id': https://doi.org/10.1175/bams-d-20-0040.1 '@type': CreativeWork identifier: - '@type': PropertyValue propertyID: doi value: 10.1175/bams-d-20-0040.1 - '@type': PropertyValue propertyID: eid value: 2-s2.0-85099205318 name: Predicting the Floods that Follow the Flames - '@id': https://doi.org/10.3390/rs12081296 '@type': CreativeWork identifier: - '@type': PropertyValue propertyID: eid value: 2-s2.0-85084575360 - '@type': PropertyValue propertyID: doi value: 10.3390/rs12081296 name: Near-Field Remote Sensing of Surface Velocity and River Discharge Using Radars and the Probability Concept at 10 U.S. Geological Survey Streamgages - '@id': https://doi.org/10.1029/2019wr025986 '@type': CreativeWork identifier: - '@type': PropertyValue propertyID: doi value: 10.1029/2019wr025986 - '@type': PropertyValue propertyID: eid value: 2-s2.0-85083170901 name: 'Fundamental Hydraulics of Cross Sections in Natural Rivers: Preliminary Analysis of a Large Data Set of Acoustic Doppler Flow Measurements' - '@id': https://doi.org/10.5066/p9tj7s4o '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.5066/p9tj7s4o name: Drone- and ground-based measurements of velocity, depth, and discharge collected during 2017-18 at the Arkansas and South Platte Rivers in Colorado and the Salcha and Tanana Rivers in Alaska, USA - '@id': https://doi.org/10.5066/p98dc3dx '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.5066/p98dc3dx name: Radar-based field measurements of surface velocity and discharge from 10 U.S. Geological Survey streamgages for various locations in the United States, 2002-19 - '@id': https://doi.org/10.1029/2018wr024220 '@type': CreativeWork identifier: - '@type': PropertyValue propertyID: doi value: 10.1029/2018wr024220 - '@type': PropertyValue propertyID: eid value: 2-s2.0-85070321118 name: River Bathymetry Estimate and Discharge Assessment from Remote Sensing - '@id': https://doi.org/10.5066/p9gn325t '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.5066/p9gn325t name: Bathymetric survey of the Green River near Jensen, Utah, March 26-29, 2018 - '@id': https://doi.org/10.3133/fs20193024 '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.3133/fs20193024 name: "Remote sensing of river flow in Alaska\u2014New technology to improve\ \ safety and expand coverage of USGS streamgaging" - '@id': https://doi.org/10.5066/p9qk9d1v '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.5066/p9qk9d1v name: Water-surface elevations derived from submersible pressure transducers deployed along the Green River near Jensen, Utah, February-September, 2018 - '@id': https://doi.org/10.1016/j.jhydrol.2018.04.005 '@type': CreativeWork identifier: - '@type': PropertyValue propertyID: eid value: 2-s2.0-85046810681 - '@type': PropertyValue propertyID: doi value: 10.1016/j.jhydrol.2018.04.005 name: 'Satellite Remote Sensing Estimation of River Discharge: Application to the Yukon River Alaska' - '@id': https://doi.org/10.1016/j.jhydrol.2018.04.073 '@type': CreativeWork identifier: - '@type': PropertyValue propertyID: doi value: 10.1016/j.jhydrol.2018.04.073 - '@type': PropertyValue propertyID: eid value: 2-s2.0-85047642254 name: 'Computing under-ice discharge: A proof-of-concept using hydroacoustics and the Probability Concept' - '@id': https://doi.org/10.1061/ciegag.0001251 '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.1061/ciegag.0001251 name: Hazard Forecasting Methods Could Revolutionize Hydrology Monitoring - '@id': https://doi.org/10.1175/bams-d-17-0161.1 '@type': CreativeWork identifier: - '@type': PropertyValue propertyID: eid value: 2-s2.0-85036649916 - '@type': PropertyValue propertyID: doi value: 10.1175/bams-d-17-0161.1 name: Engaging the user community for advancing societal applications of the surface water ocean topography mission - '@id': https://doi.org/10.1002/2015wr018434 '@type': CreativeWork identifier: - '@type': PropertyValue propertyID: doi value: 10.1002/2015wr018434 - '@type': PropertyValue propertyID: eid value: 2-s2.0-84978032829 name: An intercomparison of remote sensing river discharge estimation algorithms from measurements of river height, width, and slope - '@id': https://doi.org/10.3133/sir20155136 '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.3133/sir20155136 name: "Occurrence and trends in the concentrations of fecal-indicator bacteria\ \ and the relation to field water-quality parameters in the Allegheny, Monongahela,\ \ and Ohio Rivers and selected tributaries, Allegheny County, Pennsylvania,\ \ 2001\u201309" - '@id': https://doi.org/10.5066/f7d798h6 '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.5066/f7d798h6 name: USGS HYDRoacoustic dataset in support of the Surface Water Oceanographic Topography satellite mission (HYDRoSWOT) - '@id': https://doi.org/10.1007/978-3-319-09054-2_123 '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.1007/978-3-319-09054-2_123 name: 'Continuous Discharge Monitoring Using Non-contact Methods for Velocity Measurements: Uncertainty Analysis' - '@id': https://doi.org/10.3996/052013-jfwm-033 '@type': CreativeWork identifier: - '@type': PropertyValue propertyID: doi value: 10.3996/052013-jfwm-033 - '@type': PropertyValue propertyID: eid value: 2-s2.0-84932158863 name: Effects of high salinity wastewater discharges on unionid mussels in the allegheny river, Pennsylvania - '@id': https://doi.org/10.3133/sir20155073 '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.3133/sir20155073 name: "Water-budgets and recharge-area simulations for the Spring Creek and\ \ Nittany Creek Basins and parts of the Spruce Creek Basin, Centre and Huntingdon\ \ Counties, Pennsylvania, Water Years 2000\u201306" - '@id': https://doi.org/10.3133/sir20135145 '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.3133/sir20135145 name: Calibration of a two-dimensional hydrodynamic model for parts of the Allegheny, Monongahela, and Ohio Rivers, Allegheny County, Pennsylvania - '@id': https://doi.org/10.3133/sir20145019 '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.3133/sir20145019 name: Remediation scenarios for attenuating peak flows and reducing sediment transport in Fountain Creek, Colorado, 2013 - '@id': https://doi.org/10.3133/fs20143062 '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.3133/fs20143062 name: 'Using science to strengthen our Nations resilience to tomorrows challenges: understanding and preparing for coastal impacts' - '@id': https://doi.org/10.3133/ds784 '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.3133/ds784 name: "Velocity, water-quality, and bathymetric surveys of the Grays Landing\ \ and Maxwell Navigation Pools, and Selected Tributaries to the Monongahela\ \ River, Pennsylvania, 2010\u201311" - '@id': https://doi.org/10.1016/j.ecolmodel.2009.10.019 '@type': CreativeWork identifier: - '@type': PropertyValue propertyID: doi value: 10.1016/j.ecolmodel.2009.10.019 - '@type': PropertyValue propertyID: eid value: 2-s2.0-72049095542 name: Hydraulic modeling of mussel habitat at a bridge-replacement site, Allegheny River, Pennsylvania, USA - '@id': https://doi.org/10.1016/j.jhydrol.2008.03.028 '@type': CreativeWork identifier: - '@type': PropertyValue propertyID: eid value: 2-s2.0-45849153057 - '@type': PropertyValue propertyID: doi value: 10.1016/j.jhydrol.2008.03.028 name: 'Measuring real-time streamflow using emerging technologies: Radar, hydroacoustics, and the probability concept' - '@id': https://doi.org/10.3133/sir20065216 '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.3133/sir20065216 name: Fecal-indicator bacteria in the Allegheny, Monongahela, and Ohio Rivers and selected tributaries, Allegheny County, Pennsylvania, 2001-2005 - '@id': https://doi.org/10.3133/sir20055091 '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.3133/sir20055091 name: Hydrogeologic setting and conceptual hydrologic model of the Spring Creek Basin, Centre County, Pennsylvania, June 2005 - '@id': https://doi.org/10.3133/sir20045009 '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.3133/sir20045009 name: Fecal-indicator bacteria in the Allegheny, Monongahela, and Ohio Rivers, near Pittsburgh, Pennsylvania, July-September 2001 - '@type': CreativeWork name: Comparison and assessment of methods of measuring discharge in rivers and streams - '@type': CreativeWork name: In Situ Air Sparging, EM 1110-1-4005 - '@type': CreativeWork name: Soil Vapor Extraction and Bioventing, EM 1110-1-4001 - '@id': https://doi.org/10.1016/0169-7722(88)90004-6 '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.1016/0169-7722(88)90004-6 name: Groundwater munition residues and nitrate near Grand Island, Nebraska, U.S.A. - '@type': CreativeWork name: Groundwater RDX and TNT residues in Hall County, Nebraska '@type': Person address: '@type': PostalAddress addressCountry: US affiliation: '@type': Organization identifier: '@type': PropertyValue propertyID: ROR value: https://ror.org/035a68863 name: United States Geological Survey alumniOf: - '@type': Organization alternateName: Geology identifier: '@type': PropertyValue propertyID: RINGGOLD value: '4052' name: Indiana University of Pennsylvania - '@type': Organization alternateName: Geology identifier: '@type': PropertyValue propertyID: RINGGOLD value: '14719' name: University of Nebraska-Lincoln - '@type': Organization alternateName: Civil and Environmental Engineering identifier: '@type': PropertyValue propertyID: RINGGOLD value: '6614' name: University of Pittsburgh familyName: Fulton givenName: John identifier: - '@type': PropertyValue propertyID: Scopus Author ID value: '14019401300' - '@type': PropertyValue propertyID: Loop profile value: '1146518' mainEntityOfPage: https://orcid.org/0000-0002-5335-0720 name: John W. Fulton
USGS Staff Profile:
'@context': https://schema.org '@type': Person affiliation: [] description: - '@type': TextObject abstract: Research Hydrologist with the Colorado Water Science Center additionalType: short description - '@type': TextObject abstract: John is a hydraulic engineer, DOI sUAS remote pilot, and Research Hydrologist for the Colorado Water Science Center. additionalType: staff profile page introductory statement - '@type': TextObject abstract: He has 35 years of experience in water resources engineering within the federal government and private sector with an emphasis in surface water, applied research, and project management. These works involved multi-agency collaborations including state DOTs, EPA, JPL, NASA, NOAA, USACE, and USFWS. His research interests include (1) remote sensing from fixed- and drone-based platforms, (2) operationalizing Doppler and pulsed radars to measure river discharge in small- and big-river systems, (3) deploying ground-penetrating radars to measure channel bathymetry and snow depth, and (4) installing flood alert networks related to extreme events including wildfires. additionalType: personal statement email: jwfulton@usgs.gov hasCredential: - '@type': EducationalOccupationalCredential name: M.S., Civil and Environmental Engineering (Hydraulics), University of Pittsburgh - '@type': EducationalOccupationalCredential name: M.S., Geology, University of Nebraska - '@type': EducationalOccupationalCredential name: B.S., Geology, Indiana University of Pennsylvania hasOccupation: - '@type': OrganizationalRole affiliatedOrganization: '@type': Organization name: Colorado Water Science Center url: https://www.usgs.gov/centers/colorado-water-science-center roleName: Research Hydrologist startDate: '2024-05-12T15:19:17.986568' - '@type': Occupation additionalType: self-claimed professional experience name: "2000 \u2013 U.S. Geological Survey" - '@type': Occupation additionalType: self-claimed professional experience name: "1991 \u2013 2000 ENSR Consulting and Engineering" - '@type': Occupation additionalType: self-claimed professional experience name: "1986 \u2013 1991 Delta Environmental Consultants" - '@type': Occupation additionalType: self-claimed professional experience name: "1985 \u2013 1986 Twin City Testing" identifier: - '@type': PropertyValue propertyID: GeoKB value: https://geokb.wikibase.cloud/entity/Q46207 - '@type': PropertyValue propertyID: ORCID value: 0000-0002-5335-0720 jobTitle: Research Hydrologist knowsAbout: - '@type': Thing additionalType: self-claimed expertise name: Non-contact river discharge - '@type': Thing additionalType: self-claimed expertise name: Open-channel hydraulics and modeling - '@type': Thing additionalType: self-claimed expertise name: Post-wildfire flood alert networks - '@type': Thing additionalType: self-claimed expertise name: Near-field remote sensing - '@type': Thing additionalType: self-claimed expertise name: Small, unmanned aircraft systems (sUAS) - '@type': Thing additionalType: self-claimed expertise name: Snow measurements memberOf: '@type': OrganizationalRole member: '@type': Organization name: U.S. Geological Survey name: staff member startDate: '2024-05-12T15:19:17.983939' name: John W Fulton url: https://www.usgs.gov/staff-profiles/john-w-fulton