Publications, Activities, and Awards

  • 3-D geophysical study of Southern British Columbia
  • 3D Electrical Resistivity of the Crust and Upper Mantle of the Southern Canadian Cordillera from Inversion of Magnetotelluric Data: Linking Geothermal Potential to Regional Scale Crustal Structure
  • An Attempt to Resurrect Legacy Geophysical Data from the 1970s Energy Crisis: Inverting Direct Current Resistivity Data over the Lakelse Hotsprings
  • An introduction to geothermal exploration using electromagnetic methods, with application to Western Canada
  • Application of magnetotelluric Data to Geothermal Exploration in a Sedimentary Basin Environment: Examples from the Western Canadian Sedimentary Basin
  • Applications of magnetotellurics in geothermal exploration
  • Applications of magnetotellurics in geothermal exploration
  • Bouguer Gravity Studies of Volcanic Centres in the Garibaldi Volcanic Belt, British Columbia, Canada: Characterizing Geothermal Resources
  • Combining magnetotelluric and well-log data to improve estimates of geothermal resources in the Western Canadian Sedimentary Basin
  • Geological structure, thermal spring distribution, and geothermal energy potential in the southern Canadian Cordillera
  • Geophysical Imaging of the Magma Body Beneath Mount Meager, Southwestern Canada
  • Geothermal Canada Director
  • Geothermal Energy and Volcanic Hazards at Mount Meager, British Columbia
  • Geothermal energy development in Canada
  • Geothermal Energy in Canada
  • Geothermal Energy in Canada
  • Geothermal Energy in Canada
  • Geothermal Energy in Canada
  • Geothermal Energy in Canada
  • Geothermal Energy in Canada
  • Geothermal Energy in Canada
  • Geothermal Energy in Canada
  • Geothermal Energy in Canada
  • Geothermal Energy in Canada
  • Geothermal Energy in Canada – Moving Forward in 2021
  • Geothermal Energy in Canada – Times Are “a Changing”
  • Geothermal Energy in Canada.
  • Geothermal Exploration at Mount Meager, Southwestern BC: A Regional Resistivity Model from 3-D Inversion of Magnetotelluric Data
  • Geothermal Exploration at Mount Meager, Southwestern BC: A resistivity model from 3-D inversion of magnetotelluric data
  • How geothermal and oil & gas complement each other
  • Imaging the magmatic system beneath the Krafla geothermal field, Iceland: A new 3-D electrical resistivity model from inversion of magnetotelluric data
  • Integrated Electrical and Electromagnetic Exploration at the M’Deek Geothermal Field
  • Interview about geothermal energy in Hawaii
  • Linking Regional-Scale Crustal Structures to Small-Scale Geothermal Systems with Magnetotelluric Exploration: An Example from the Southeastern Canadian Cordillera
  • Magnetotelluric Exploration at Mount Meager, Southwestern BC: An integrated study of the hydrothermal and magmatic system beneath the geothermal prospect
  • Magnetotelluric Exploration at Mount Meager, Southwestern Canada: Imaging the Magma Body Beneath a Holocene Volcanic Center
  • Magnetotelluric exploration in the southeastern Canadian Cordillera: Regional-scale crust structures associated with geothermal systems
  • Magnetotelluric Exploration in the Southeastern Canadian Cordillera: Regional-Scale Crustal Structures Associated with Geothermal Systems
  • Magnetotelluric exploration of a geothermal prospect in the southern Rocky Mountain Trench, British Columbia, Canada
  • Magnetotelluric field work for geothermal study
  • Magnetotelluric imaging of the magmatic and geothermal systems beneath Mount Meager, southwestern Canada
  • Magnetotelluric Investigations of Geothermal Systems Centred in Southern British Columbia (Parts of NTS 082, 083, 092, 093)
  • Magnetotelluric studies of the Cascadia subduction zone and Garibaldi volcanic belt in southwest British Columbia
  • Magnetotelluric studies of the Cascadia subduction zone and Garibaldi volcanic belt in southwest British Columbia
  • Modern dextral strain controls active hydrothermal systems in the southeastern Canadian Cordillera
  • Post-Eocene kinematics of faults that host potential geothermal systems in southeastern British Columbia
  • Preliminary development of a pseudo-3D MT inversion using deep learning and its application to the Mount Meager geothermal area, British Columbia
  • Processing and Combining Electromagnetic Datasets at the M’Deek Geothermal Field
  • Regional-scale resistivity structure of the middle and lower crust and uppermost mantle beneath the southeastern Canadian Cordillera and insights into its causes
  • Resistivity Models of Southwestern Canada: New insights into lithospheric structure, magma bodies, and geothermal systems
  • Sensitivity of magnetotelluric data to rhyolite magma encountered by the IDDP-1 well at the Krafla geothermal field, Iceland
  • Structural and neotectonic controls on hydrothermal upwellings in the southeastern Canadian Cordillera
  • Structural and neotectonic controls on thermal spring locations in the southeastern Canadian Cordillera / southeastern British Columbia
  • Structural heterogeneity, thermal spring distribution, and geothermal energy potential along the Southern Rocky Mountain Trench
  • Structural settings of convective hydrothermal systems in southeastern British Columbia (parts of NTS 082E–G, J–O,083C, D)
  • The Garibaldi Volcanic Belt Geothermal Energy Project – Mount Meager 2019 Field Program
  • The structural settings of convective hydrothermal systems in southeastern British Columbia, Canada
  • Three-dimensional inversion of magnetotelluric data for a resistivity model with arbitrary anisotropy
  • Using magnetotelluric data in geothermal exploration and volcanology
  • Visit to Paipa geothermal field