Item talk:Q47819: Difference between revisions

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ORCID:
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      },
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      },
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      display_name: Mechanics of Materials
        },
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        "id": "https://openalex.org/T10644",
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        }
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      display_name: Ocean Engineering
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      id: https://openalex.org/subfields/2212
        },
  - count: 4
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    domain:
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      display_name: Physical Sciences
        },
      id: https://openalex.org/domains/3
        "id": "https://openalex.org/T10555",
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          "display_name": "Global and Planetary Change",
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    subfield:
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      display_name: Astronomy and Astrophysics
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  updated_date: '2024-05-19T13:53:51.930562'
        "display_name": "Urban Wind Environment and Air Quality Modeling",
USGS Staff Profile:
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    name: Member, American Geophysical Union
        },
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    name: Member, International Association of Volcanology and Chemistry of the Earth's
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    abstract: Physical Volcanologist with the Cascades Volcano Observatory
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    abstract: I have spent much of my career working to understand, assess, and mitigate
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       \ in the field and designed experiments to generate volcanic ash in the laboratory.\
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      \  I also develop and use models that simulate the ascent of magma in conduits,\
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      \ rise of ash in volcanic plumes, and downwind movement of ash clouds.  I have\
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      \ been involved in the development and application of several models that simulate\
       },
      \ these processes.I have worked with emergency managers, Volcanic Ash Advisory\
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        "count": 12,
      \ the world to improve the accuracy of volcanic ash forecasts, both for aviation\
        "display_name": "Machine Learning for Mineral Prospectivity Mapping",
      \ safety and for ground-based communities. From 2010-2020 I served as co-chair\
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      \ of the World Meteorological Organization\u2019s Volcanic Ash Scientific Advisory\
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      \ on the science and practice of volcanic ash-cloud detection and forecasting.My\
        },
      \ professional life began as a mud logger working on the North Slope of Alaska\
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      \ in 1980-81.  While studying for my master\u2019s degree at Stanford in 1982-84,\
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      \ I worked part time for the Tectonophysics branch of the USGS in Menlo Park,\
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       \ California, where I assisted with hydraulic fracturing stress measurements,\
        },
       \ and studied the growth of fractures and the development of breakouts, i.e.\
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      \ stress-induced zones of failure, around boreholes in sandstone.My Ph.D. work\
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      \ at Stanford, from 1984-1988, under Professor David Pollard, involved field\
          "display_name": "Artificial Intelligence",
      \ and laboratory study of the growth of surface faults above a shallow dike\
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      \ in Long Valley Caldera, California.  A second half of this study focused\
        }
      \ on how the dike heated groundwater that erupted to produce several large explosion\
      },
      \ craters, the Inyo Craters, north of the town of Mammoth Lakes.After completing\
       {
      \ my Ph.D., I worked from 1988-1990 as a post-doctoral researcher in the Geophysics\
        "count": 12,
      \ Institute at the University of Karlsruhe, Germany. My tasks included compiling\
        "display_name": "Turbulent Flows and Vortex Dynamics",
       \ data for the European part of a World Stress Map project, and examining the\
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       \ state of stress at a deep drillhole site in northern Bavaria.At the Cascades\
          "display_name": "Physical Sciences",
      \ Volcano Observatory, from 1990 through the late 2000s, I concentrated on the\
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      \ role of water in the style and timing of eruptions.  This work involved, for\
        },
      \ example, an examination of correlations between rainfall and gas explosions\
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      \ at Mount St. Helens; on the conditions that produced explosive phreatomagmatic\
          "display_name": "Engineering",
      \ eruptions at Kilauea, and effects of turbulent water-magma mixing on eruptive\
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      \ style.Since the late 2000s, I have been involved primarily in volcanic ash\
        },
      \ hazards, as described above."
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          "display_name": "Computational Mechanics",
    abstract: "2021: \u201CComparing the hazards of wildfire smoke and volcanic ash\
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      \ in the Pacific Northwest\u201D, invited talk in the Cascadia Wildfire and\
        }
       \ Urban Smoke seminar series, sponsored by Portland State University and the\
       },
       \ Cascadia Innovation Corridor Iniative  (search for it on YouTube)"
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        "count": 11,
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        "display_name": "Machine Learning for Earthquake Early Warning Systems",
    abstract: "2020: \u201CProtecting air travel from volcanic ash in the coming decade\u201D\
        "domain": {
      , invited talk V08-15 at 2020 American Geophysical Union Fall Meeting."
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    additionalType: staff profile page abstract
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  - '@type': TextObject
        },
    abstract: "2016: \u201CForecasting Ashfall Impacts from a Yellowstone Supereruption\u201D\
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      , USGS Menlo Park Public Lecture, May 26, 2016, https://www.usgs.gov/media/videos/forecasting-ashfall-impacts-a-yellowstone-supereruption"
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    additionalType: staff profile page abstract
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  email: lgmastin@usgs.gov
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    name: 1988 Ph.D. Geomechanics, Stanford University
          "display_name": "Artificial Intelligence",
  - '@type': EducationalOccupationalCredential
          "id": "https://openalex.org/subfields/1702"
    name: 1984 M.S. Engineering Geology, Stanford University
        }
  - '@type': EducationalOccupationalCredential
       },
    name: 1980 B.S. Geology, University of California, Davis (cum Laude)
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        "count": 11,
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        "display_name": "Climate Change and Variability Research",
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          "display_name": "Environmental Science",
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  jobTitle: Physical Volcanologist
       },
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    name: Volcanic Ash Hazards
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    name: Explosive Eruptions
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    name: Ash and Aviation
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  - '@type': Thing
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    name: Volcanic Ash Clouds
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    name: staff member
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          "id": "https://openalex.org/domains/3"
   name: Larry G. Mastin, Ph.D.
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  url: https://www.usgs.gov/staff-profiles/larry-g-mastin
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        },
        "id": "https://openalex.org/T12383",
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        "id": "https://openalex.org/T12424",
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       },
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        "field": {
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        },
        "id": "https://openalex.org/T10413",
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      },
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        },
        "field": {
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        },
        "id": "https://openalex.org/T11757",
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      },
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        "display_name": "Turbulent Interactions with Dispersed Particles and Droplets",
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        },
        "field": {
          "display_name": "Engineering",
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        },
        "id": "https://openalex.org/T12350",
        "subfield": {
          "display_name": "Ocean Engineering",
          "id": "https://openalex.org/subfields/2212"
        }
      },
      {
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        "display_name": "Geological Modeling and Uncertainty Analysis",
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        },
        "id": "https://openalex.org/T13067",
        "subfield": {
          "display_name": "Geochemistry and Petrology",
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      },
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        "id": "https://openalex.org/T10892",
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      },
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        "id": "https://openalex.org/T10161",
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        "display_name": "Applications of Ground-Penetrating Radar in Geoscience and Engineering",
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        "id": "https://openalex.org/T11609",
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          "id": "https://openalex.org/subfields/2212"
        }
      },
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        "display_name": "Global Lightning Distribution and Physics",
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        },
        "field": {
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      }
    ],
     "updated_date": "2024-05-19T13:53:51.930562"
   }
}

Revision as of 20:05, 30 August 2024

{

 "USGS Staff Profile": {
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