Item talk:Q45863: Difference between revisions
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ORCID: | |||
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name: "Paleoseismology of the Sawtooth Fault and Implications for Fault Behavior\ | |||
\ in the Epicentral Region of the 2020 Mw\_6.5 Stanley, Idaho, Earthquake" | |||
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name: "Rapid Surface Rupture Mapping from Satellite Data: The 2023 Kahramanmara\u015F\ | |||
, Turkey (T\xFCrkiye), Earthquake Sequence" | |||
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name: How similar was the 1983 Mw 6.9 Borah Peak earthquake rupture to its surface-faulting | |||
predecessors along the northern Lost River fault zone (Idaho, USA)? | |||
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name: Luminescence sediment tracing reveals the complex dynamics of colluvial | |||
wedge formation | |||
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name: Mid- to Late-Quaternary Geomorphic and Paleoseismic Event History, Cheraw | |||
Fault, Southeastern Colorado | |||
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rupture to its surface-faulting predecessors along the northern Lost River | |||
fault zone (Idaho, USA)?' | |||
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name: 'Supplemental Material: How similar was the 1983 Mw 6.9 Borah Peak earthquake | |||
rupture to its surface-faulting predecessors along the northern Lost River | |||
fault zone (Idaho, USA)?' | |||
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name: 'Supplemental Material: Portable optically stimulated luminescence age | |||
map of a paleoseismic exposure' | |||
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name: Quick and Dirty (and Accurate) 3D Paleoseismic Trench Models Using Coded | |||
Scale Bars | |||
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name: "A maximum rupture model for the central and southern Cascadia subduction\ | |||
\ zone\u2014reassessing ages for coastal evidence of megathrust earthquakes\ | |||
\ and tsunamis" | |||
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name: 'Coseismic Surface Displacement in the 2019 Ridgecrest Earthquakes: Comparison | |||
of Field Measurements and Optical Image Correlation Results' | |||
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\ System, Eastern California" | |||
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in the New Madrid Seismic Zone, USA | |||
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name: Stratigraphic and structural relations in trench exposures and geomorphology | |||
at the Big Burn, Lily Lake, and Lester Ranch sites, Bear River Fault Zone, | |||
Utah and Wyoming | |||
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name: US Geological Survey Southwest Region | |||
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givenName: Christopher | |||
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USGS Staff Profile: | USGS Staff Profile: | ||
'@context': https://schema.org | '@context': https://schema.org |
Revision as of 15:38, 23 May 2024
ORCID:
'@context': http://schema.org '@id': https://orcid.org/0000-0002-6963-7451 '@reverse': creator: - '@id': https://doi.org/10.1785/0320230045 '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.1785/0320230045 name: "Paleoseismology of the Sawtooth Fault and Implications for Fault Behavior\ \ in the Epicentral Region of the 2020 Mw\_6.5 Stanley, Idaho, Earthquake" - '@id': https://doi.org/10.1785/0320230029 '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.1785/0320230029 name: "Rapid Surface Rupture Mapping from Satellite Data: The 2023 Kahramanmara\u015F\ , Turkey (T\xFCrkiye), Earthquake Sequence" - '@id': https://doi.org/10.1130/b36144.1 '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.1130/b36144.1 name: How similar was the 1983 Mw 6.9 Borah Peak earthquake rupture to its surface-faulting predecessors along the northern Lost River fault zone (Idaho, USA)? - '@id': https://doi.org/10.1785/0220220162 '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.1785/0220220162 name: Revised Earthquake Geology Inputs for the Central and Eastern United States and Southeast Canada for the 2023 National Seismic Hazard Model - '@id': https://doi.org/10.1126/sciadv.abo0747 '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.1126/sciadv.abo0747 name: Luminescence sediment tracing reveals the complex dynamics of colluvial wedge formation - '@id': https://doi.org/10.1785/0120210285 '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.1785/0120210285 name: Mid- to Late-Quaternary Geomorphic and Paleoseismic Event History, Cheraw Fault, Southeastern Colorado - '@id': https://doi.org/10.1130/gsab.s.18287984 '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.1130/gsab.s.18287984 name: 'Supplemental Material: How similar was the 1983 Mw 6.9 Borah Peak earthquake rupture to its surface-faulting predecessors along the northern Lost River fault zone (Idaho, USA)?' - '@id': https://doi.org/10.1130/gsab.s.18287984.v1 '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.1130/gsab.s.18287984.v1 name: 'Supplemental Material: How similar was the 1983 Mw 6.9 Borah Peak earthquake rupture to its surface-faulting predecessors along the northern Lost River fault zone (Idaho, USA)?' - '@id': https://doi.org/10.1130/geol.s.17139323.v1 '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.1130/geol.s.17139323.v1 name: 'Supplemental Material: Portable optically stimulated luminescence age map of a paleoseismic exposure' - '@id': https://doi.org/10.1130/geol.s.17139323 '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.1130/geol.s.17139323 name: 'Supplemental Material: Portable optically stimulated luminescence age map of a paleoseismic exposure' - '@id': https://doi.org/10.1785/0220200246 '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.1785/0220200246 name: Quick and Dirty (and Accurate) 3D Paleoseismic Trench Models Using Coded Scale Bars - '@id': https://doi.org/10.1016/j.quascirev.2021.106922 '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.1016/j.quascirev.2021.106922 name: "A maximum rupture model for the central and southern Cascadia subduction\ \ zone\u2014reassessing ages for coastal evidence of megathrust earthquakes\ \ and tsunamis" - '@id': https://doi.org/10.1029/2020gc009326 '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.1029/2020gc009326 name: 'Coseismic Surface Displacement in the 2019 Ridgecrest Earthquakes: Comparison of Field Measurements and Optical Image Correlation Results' - '@id': https://doi.org/10.1029/2020jb020243 '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.1029/2020jb020243 name: "Seismic Reflection Imaging of the Low\u2010Angle Panamint Normal Fault\ \ System, Eastern California" - '@id': https://doi.org/10.1029/2018jb016806 '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.1029/2018jb016806 name: Four Major Holocene Earthquakes on the Reelfoot Fault Recorded by Sackungen in the New Madrid Seismic Zone, USA - '@id': https://doi.org/10.3133/sim3430 '@type': CreativeWork identifier: '@type': PropertyValue propertyID: doi value: 10.3133/sim3430 name: Stratigraphic and structural relations in trench exposures and geomorphology at the Big Burn, Lily Lake, and Lester Ranch sites, Bear River Fault Zone, Utah and Wyoming '@type': Person affiliation: '@type': Organization identifier: '@type': PropertyValue propertyID: RINGGOLD value: '93526' name: US Geological Survey Southwest Region familyName: DuRoss givenName: Christopher mainEntityOfPage: https://orcid.org/0000-0002-6963-7451
USGS Staff Profile:
'@context': https://schema.org '@type': Person affiliation: [] description: - '@type': TextObject abstract: Research Geologist with the Earthquake Hazards Program additionalType: short description - '@type': TextObject abstract: As an earthquake geologist, I investigate geologic evidence of active faulting, with an emphasis on normal-faulting regions of the Western U.S. My research is focused on field-based mapping and paleoseismic trenching investigations, Quaternary geochronology and geomorphology, syntheses of complex paleoseismic datasets, the characterization of active faults for probabilistic seismic-hazard analysis, and post-earthquake investigations to collect ephemeral field data. The goal of this research is to quantify seismic hazard in the U.S. and reduce earthquake risk. additionalType: staff profile page introductory statement - '@type': TextObject abstract: "Primary research interests:Paleoseismology and earthquake geologyQuaternary\ \ geochronology and Bayesian modelingTectonic geomorphology and geologic mappingRemote\ \ sensing and image-based (structure-from-motion) modelingEarthquake probability\ \ and hazard modelingAreas of active research:Teton fault (Wyoming): Developing\ \ new paleoseismic (fault-trench) data to refine estimates of earthquake timing,\ \ displacement, rupture length, and magnitude.Wasatch fault zone (Utah): Synthesizing\ \ existing paleoseismic data to develop objective contstraints on prehistoric\ \ earthquake rupture length.Lost River fault zone (Idaho): Comparing prehistoric\ \ and historic (M6.9 Borah Peak earthquake) rupture timing, displacement, and\ \ geometry.2019 Ridgecrest earthquake sequence (California): Evaluating along-strike\ \ displacement profile for the M7.1 rupture.PublicationsDuRoss, C. B., M. S.\ \ Zellman, G. D. Thackray, R. W. Briggs, R. D. Gold, and S. A. Mahan (2020).\ \ Holocene Paleoseismology of the Steamboat Mountain Site: Evidence for Full\u2010\ Length Rupture of the Teton Fault, Wyoming, Bulletin of the Seismological Society\ \ of America, doi: https://doi.org/10.1785/0120200212DuRoss, C. B., R. D. Gold,\ \ T. E. Dawson, K. M. Scharer, K. J. Kendrick, S. O. Akciz, S. J. Angster, J.\ \ Bachhuber, S. Bacon, S. E. K. Bennett, et al. (2020). Surface Displacement\ \ Distributions for the July 2019 Ridgecrest, California, Earthquake Ruptures,\ \ Bull. Seismol. Soc. Am. 110(4), 1400\u20131418, https://doi.org/10.1785/0120200058.DuRoss,\ \ C. B., R. D. Gold, T. E. Dawson, K. M. Scharer, K. J. Kendrick, S. O. Akciz,\ \ S. J. Angster, J. Bachhuber, S. Bacon, S. E. K. Bennett, et al., 2020, Surface\ \ Displacement Observations of the 2019 Ridgecrest, California Earthquake Sequence:\ \ U.S. Geological Survey data release, https://doi.org/10.5066/P986ILE2.Valentini,\ \ A.,DuRoss, C.B., Field, E.H., Gold, R.D., Briggs, R.W., Visini, F., and Pace,\ \ B., 2019, Relaxing segmentation on the Wasatch fault zone: Impact on seismic\ \ hazard: Bulletin of the Seismological Society of America. https://doi.org" additionalType: personal statement email: cduross@usgs.gov hasCredential: [] hasOccupation: - '@type': OrganizationalRole affiliatedOrganization: '@type': Organization name: Earthquake Hazards Program url: https://www.usgs.gov/programs/earthquake-hazards roleName: Research Geologist startDate: '2024-05-12T16:17:26.204362' - '@type': Occupation additionalType: self-claimed professional experience name: "2014 \u2013 present Research Geologist, U.S. Geological Survey,\ \ Golden, Colorado \n2004 \u2013 2014 Senior Geologist,\ \ Utah Geological Survey, Salt Lake City, Utah" identifier: - '@type': PropertyValue propertyID: GeoKB value: https://geokb.wikibase.cloud/entity/Q45863 - '@type': PropertyValue propertyID: ORCID value: 0000-0002-6963-7451 jobTitle: Research Geologist knowsAbout: - '@type': Thing additionalType: self-claimed expertise name: Earthquakes - '@type': Thing additionalType: self-claimed expertise name: Paleoseismology - '@type': Thing additionalType: self-claimed expertise name: Earthquake probabilities - '@type': Thing additionalType: self-claimed expertise name: Bayesian modeling - '@type': Thing additionalType: self-claimed expertise name: Image-based modeling memberOf: '@type': OrganizationalRole member: '@type': Organization name: U.S. Geological Survey name: staff member startDate: '2024-05-12T16:17:26.201712' name: Christopher B DuRoss url: https://www.usgs.gov/staff-profiles/christopher-b-duross