Item talk:Q44659: Difference between revisions

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ORCID:
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  '@context': http://schema.org
  "USGS Staff Profile": {
  '@id': https://orcid.org/0000-0003-1414-6476
    "_id": "https://www.usgs.gov/staff-profiles/patrick-barnard",
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      name: The value of marsh restoration for flood risk reduction in an urban estuary
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          "abstract": "Research Geologist with the Pacific Coastal and Marine Science Center",
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      name: 'Dynamic Modeling of Coastal Compound Flooding Hazards Due to Tides, Extratropical
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        Storms, Waves, and Sea-Level Rise: A Case Study in the Salish Sea, Washington
          "@type": "TextObject",
        (USA)'
          "abstract": "Patrick is the Research Director for the Climate Impacts and Coastal Processes Team, which includes overseeing the development and application of the Coastal Storm Modeling System (CoSMoS), coastal monitoring and process-based studies of beaches across California, and research investigating the link between climate variability and coastal hazards across the Pacific Ocean basin.",
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      name: 'Slowly but surely: Exposure of communities and infrastructure to subsidence
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        on the US east coast'
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          "abstract": "Dr. Patrick Barnard has been a coastal geologist with the USGS Pacific Coastal and Marine Science Center in Santa Cruz since 2003, and is the Research Director of the Climate Impacts and Coastal Processes Team. His research focuses on storm- and climate-related changes to the beaches and estuaries bordering the Pacific Ocean. His research has been published in over 80 peer-reviewed scientific papers, includingNature, and presented over 100 times at scientific conferences and universities. He serves on numerous regional, national and international scientific review panels related to climate change and coastal hazards. He received a BA from Williams College, MS from University of South Florida, and PhD from UC Riverside.",
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      "email": "pbarnard@usgs.gov",
      name: 'Modeling Extreme Water Levels in the Salish Sea: The Importance of Including
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        Remote Sea Level Anomalies for Application in Hydrodynamic Simulations'
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      name: "A Model Integrating Satellite\u2010Derived Shoreline Observations for\
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        \ Predicting Fine\u2010Scale Shoreline Response to Waves and Sea\u2010Level\
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        \ Rise Across Large Coastal Regions"
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      name: Relative contributions of water-level components to extreme water levels
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        along the US Southeast Atlantic Coast from a regional-scale water-level hindcast
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      name: Earth science looks to outer space
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