Item talk:Q49411: Difference between revisions

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(Updated person data cache with ORCID information)
(Updated item talk page content)
Line 2,694: Line 2,694:
usgs_staff_profile:
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    timestamp: '2024-01-30T16:16:59.339074'
     status_code: 200
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   profile:
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     name: Erik Smith, Ph.D.
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     education:
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     - Doctor of Philosophy, Water Resources Science, University of Minnesota-Twin
     - Hydrologist
       Cities, 2012
    - Water-Use Data and Research Program Coordinator
     - Master of Science, Geology and Geophysics, University of Minnesota-Twin Cities,
    organizations:
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    - !!python/tuple
      - Oklahoma-Texas Water Science Center
       - https://www.usgs.gov/centers/oklahoma-texas-water-science-center
     - !!python/tuple
      - Water Resources Mission Area
       - https://www.usgs.gov/mission-areas/water-resources
     email: easmith@usgs.gov
     email: easmith@usgs.gov
    orcid: 0000-0001-8434-0798
    intro_statements:
    - Dr. Smith constructs predictive hydrodynamic and water-quality models (CE-QUAL-W2;
      EFDC) to better understand land-use and hydrologic modification effects on nutrient
      fate/transport for inland lakes, estuaries, and reservoir systems. He also has
      a strong interest in improving the predictive capacity of these models to simulate
      harmful algal blooms.
     expertise_terms:
     expertise_terms:
     - groundwater quality
     - groundwater quality
Line 2,717: Line 2,729:
     - R
     - R
     - harmful algal blooms
     - harmful algal blooms
    professional_experience: []
    education:
    - Doctor of Philosophy, Water Resources Science, University of Minnesota-Twin
      Cities, 2012
    - Master of Science, Geology and Geophysics, University of Minnesota-Twin Cities,
      2005
    affiliations: []
     honors: []
     honors: []
     intro_statements:
     abstracts: []
    - Dr. Smith constructs predictive hydrodynamic and water-quality models (CE-QUAL-W2;
      EFDC) to better understand land-use and hydrologic modification effects on nutrient
      fate/transport for inland lakes, estuaries, and reservoir systems. He also has
      a strong interest in improving the predictive capacity of these models to simulate
      harmful algal blooms.
    name: Erik Smith, Ph.D.
    name_qualifier: null
    orcid: 0000-0001-8434-0798
    organization_link: https://www.usgs.gov/centers/oklahoma-texas-water-science-center
    organization_name: Oklahoma-Texas Water Science Center
     personal_statement: Erik Smith has been a hydrologist with the U.S. Geological
     personal_statement: Erik Smith has been a hydrologist with the U.S. Geological
       Survey since 2005. Other hydrodynamic modeling interests include applied models
       Survey since 2005. Other hydrodynamic modeling interests include applied models
Line 2,741: Line 2,750:
       understand agricultural impacts on groundwater recharge from both subsurface
       understand agricultural impacts on groundwater recharge from both subsurface
       tile drainage and crop irrigation.
       tile drainage and crop irrigation.
    professional_experience: []
    title: Hydrologist

Revision as of 23:17, 30 January 2024

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   timestamp: '2024-01-30T16:16:59.339074'
   status_code: 200
 profile:
   name: Erik Smith, Ph.D.
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   titles:
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   - Water-Use Data and Research Program Coordinator
   organizations:
   - !!python/tuple
     - Oklahoma-Texas Water Science Center
     - https://www.usgs.gov/centers/oklahoma-texas-water-science-center
   - !!python/tuple
     - Water Resources Mission Area
     - https://www.usgs.gov/mission-areas/water-resources
   email: easmith@usgs.gov
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   - Dr. Smith constructs predictive hydrodynamic and water-quality models (CE-QUAL-W2;
     EFDC) to better understand land-use and hydrologic modification effects on nutrient
     fate/transport for inland lakes, estuaries, and reservoir systems. He also has
     a strong interest in improving the predictive capacity of these models to simulate
     harmful algal blooms.
   expertise_terms:
   - groundwater quality
   - land use change
   - CE-QUAL-W2
   - water cycle
   - water budget
   - water-quality modeling
   - EFDC
   - SWB
   - R
   - harmful algal blooms
   professional_experience: []
   education:
   - Doctor of Philosophy, Water Resources Science, University of Minnesota-Twin
     Cities, 2012
   - Master of Science, Geology and Geophysics, University of Minnesota-Twin Cities,
     2005
   affiliations: []
   honors: []
   abstracts: []
   personal_statement: Erik Smith has been a hydrologist with the U.S. Geological
     Survey since 2005. Other hydrodynamic modeling interests include applied models
     to better serve water resource managers, such as the timing of harmful algal
     blooms and water-quality changes from large interbasin water transfers. Aside
     from hydrodynamic and water-quality modeling, Erik has applied experience with
     machine learning techniques (such as boosted regression trees) and Geographic
     Information Systems (including all ESRI products and QGIS).Erik started his
     career as a supporting scientist and full-time hydrologist on the NAWQA program's
     Agricultural Chemicals Transport (ACT) team (South Fork Iowa River). Building
     on this experience, he has spent much of his career leading studies to better
     understand agricultural impacts on groundwater recharge from both subsurface
     tile drainage and crop irrigation.