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Philip E. Wannamaker

University of Utah · US
Area of research
Geophysics · Ocean Engineering
Research interest
Research interests include Geophysical and Geoelectrical Methods, Seismic Waves and Analysis, Geophysical Methods and Applications, and Geological and Geochemical Analysis.
h-index
37
citations
5,573
works
158
NIH funding
primary concept
email

Recent publications

Trans-crustal structural control of CO2-rich extensional magmatic systems revealed at Mount Erebus Antarctica
Nature Communications 2022cited by 33position: middledoi
Feasibility of source-free DAS logging for next-generation borehole imaging
Scientific Reports 2022cited by 21position: middledoi
Downhole Microseismic Monitoring of Injection Stimulations at the Utah FORGE EGS Site
2022cited by 13position: middledoi
Trans-crustal structural control of CO<sub>2</sub>-rich extensional magmatic systems revealed at Mount Erebus Antarctica.
2022cited by 4position: contributordoi
Author Correction: Trans-crustal structural control of CO<sub>2</sub>-rich extensional magmatic systems revealed at Mount Erebus Antarctica.
2022cited by 0position: contributordoi
Magmatic, hydrothermal and ore element transfer processes of the southeastern Archean Superior Province implied from electrical resistivity structure
Gondwana Research 2021cited by 20position: middledoi
Play Fairway analysis of geothermal resources across the State of Hawai‘i: 4. Updates with new groundwater chemistry, subsurface stress analysis, and focused geophysical surveys
Geothermics 2020cited by 24position: middledoi
Uplift of the central transantarctic mountains
Nature Communications 2017cited by 61position: firstdoi
Three‐dimensional electrical resistivity model of the hydrothermal system in Long Valley Caldera, California, from magnetotellurics
Geophysical Research Letters 2016cited by 69position: lastdoi
3-D magnetotelluric inversion including topography using deformed hexahedral edge finite elements and direct solvers parallelized on SMP computers – Part I: forward problem and parameter Jacobians
Geophysical Journal International 2015cited by 91position: middledoi
3-dimensional magnetotelluric inversion including topography using deformed hexahedral edge finite elements and direct solvers parallelized on symmetric multiprocessor computers – Part II: direct data-space inverse solution
Geophysical Journal International 2015cited by 58position: middledoi
Deep electrical resistivity structure of the northwestern U.S. derived from 3-D inversion of USArray magnetotelluric data
Earth and Planetary Science Letters 2014cited by 271position: middledoi
Pathway from subducting slab to surface for melt and fluids beneath Mount Rainier
Nature 2014cited by 171position: middledoi
Segmentation of plate coupling, fate of subduction fluids, and modes of arc magmatism in <scp>C</scp>ascadia, inferred from magnetotelluric resistivity
Geochemistry Geophysics Geosystems 2014cited by 105position: firstdoi
Electrical structure of the central Cascadia subduction zone: The EMSLAB Lincoln Line revisited
Earth and Planetary Science Letters 2013cited by 78position: middledoi

Grants

Magma Sources, Residence and Pathways of Mount Erebus Phonolitic Volcano, Antarctica, from Magnetotelluric Resistivity Structure
NSF1443522$468,6572015–2021PIRePORTER
Geodynamics and Thermal Regime across the Central Transantarctic Mountains from Analysis of Magnetotelluric Measurements
NSF1243559$173,2662012–2016PIRePORTER
Collaborative Research: Geophysical Investigation of the Mid-Continent Rift System
NSF1148081$38,2222012–2015PIRePORTER
Rift Mechanisms and Thermal Regime of the Lithosphere across Beardmore Glacier Region, Central Transantarctic Mountains, from Magnetotelluric Measurements
NSF0838914$430,2452009–2012PIRePORTER
Modes of Extension, Magmatism and Crustal Scale Fluid Pathways in the Great Basin province, USA, from a Magnetotelluric Transect
NSF0838043$382,6042009–2014PIRePORTER
Collaborative Research: An Earthscope Magnetotelluric Survey of the Southern Cascadia Subduction System, Washington
NSF0843725$375,0472009–2013PIRePORTER
Whither the Transportable Magnetotelluric (MT) Array: Proposal for an EarthScope Community Workshop to Prioritize Targets for Transportable MT Deployments
NSF0746025$28,3922008–2009PIRePORTER
Deformation, Fluid Generation, and Seismogenesis in a Transitional Subduction Environment, the Marlborough Region, New Zealand, Revealed with a Magnetotelluric Resistivity Transect
NSF0440050$394,1642005–2010PIRePORTER
Modes of Lithospheric Extensional Consumption and Magmatism: Testing for End-member Cases at the Great Basin-Colorado Plateau Transition with a Magnetotelluric Resistivity Transect
NSF0230027$160,8332003–2007PIRePORTER
Collaborative Research: Electromagnetic Studies of the Continents (EMSOC): National Instrument Facility
NSF0236553$99,6492003–2007PIRePORTER
Collaborative Research: A Magnetotelluric Instrumentation Facility for Electromagnetic Study of the Continents (EMSOC)
NSF9616450$253,5901998–2005PIRePORTER
Collaborative Research: Magnetotelluric Transect of a Modern Continent-Continent Collisional Orogen: The SouthernAlps, New Zealand
NSF9725883$79,0101998–2000PIRePORTER
Thermal and Fluid State of the Lithosphere Beneath South Pole Region, East Antarctica, from Magnetotelluric Measurements
NSF9615254$252,5781997–2000PIRePORTER
Collaborative Research: Seismic/Magnetotelluric Traverse of the Byrd Subglacial Basin-Field Test
NSF9596165$136,8921995–1998PIRePORTER
Collaborative Research: Seismic, Magnetotelluric, Structuraland Petrological Studies of the Crust in Eastern Nevada to Constrain Fluid Content and Crustal Evolution
NSF9596068$136,3001995–1996PIRePORTER
Collaborative Research: The Jemez Tomography Experiment (JTEX)
NSF9596151$15,0851995–1996PIRePORTER
Collaborative Research: Seismic/Magnetotelluric Traverse of the Byrd Subglacial Basin-Field Test
NSF9219503$216,9051993–1996PIRePORTER
Collaborative Research: The Jemez Tomography Experiment (JTEX)
NSF9219423$15,0851993–1995PIRePORTER
Collaborative Research: Seismic, Magnetotelluric, Structuraland Petrological Studies of the Crust in Eastern Nevada to Constrain Fluid Content and Crustal Evolution
NSF9116943$210,0001992–1995PIRePORTER

Frequent collaborators

· 6 papers (2015–2022) · 3 papers (2013–2014)M. A. Kordy · University of Utah3 papers (2015–2022) · 3 papers (2013–2014) · 2 papers (2014–2022)Yasuo Ogawa · Planetary Science Institute2 papers (2017–2022)Elena Cherkaev · University of Utah2 papers (2015–2015) · 2 papers (2013–2014)Paul A. Bedrosian · United States Geological Survey2 papers (2014–2022)Daniel Uhlmann · University of Lausanne2 papers (2017–2022) · 2 papers (2017–2022)D. B. Snyder · United States Geological Survey1 papers (2021–2021) · 1 papers (2022–2022)Naser Meqbel · Oregon State University1 papers (2014–2014) · 1 papers (2021–2021)Bridget Ayling · University of Nevada, Reno1 papers (2017–2017)Margaret T. Mangan · United States Geological Survey1 papers (2016–2016) · 1 papers (2020–2020) · 1 papers (2020–2020)Kate Selway · Columbia University1 papers (2017–2017)