Area of research
Geophysics · Artificial Intelligence
Research interest
Research interests include Geology, Slip (aerodynamics), Fault gouge, Fault (geology), Seismology, and Subduction.
The frictional strength and stability of spatially heterogeneous fault gouges
Frictional Properties of Natural Granite Fault Gouge Under Hydrothermal Conditions: A Case Study of Strike‐Slip Fault From Anninghe Fault Zone, Southeastern Tibetan Plateau
Hydrothermal Friction Experiments on Simulated Basaltic Fault Gouge and Implications for Megathrust Earthquakes
Seismic Fault Slip Behavior Predicted From Internal Microphysical Processes
Microphysical Modeling of Carbonate Fault Friction at Slip Rates Spanning the Full Seismic Cycle
Seismic Slip‐Pulse Experiments Simulate Induced Earthquake Rupture in the Groningen Gas Field
Nucleation of Stick‐Slip Instability Within a Large‐Scale Experimental Fault: Effects of Stress Heterogeneities Due to Loading and Gouge Layer Compaction
Frictional properties of actinolite-chlorite gouge at hydrothermal conditions
Effects of heterogeneous gouge segments on the slip behavior of experimental faults at dm scale
The physics of fault friction: insights from experiments on simulated gouges at low shearing velocities
Healing Behavior of Simulated Fault Gouges From the Groningen Gas Field and Implications for Induced Fault Reactivation
Flow‐to‐Friction Transition in Simulated Calcite Gouge: Experiments and Microphysical Modeling
Mechanical Implications of Creep and Partial Coupling on the World's Fastest Slipping Low‐Angle Normal Fault in Southeastern Papua New Guinea
Microphysical Model Predictions of Fault Restrengthening Under Room‐Humidity and Hydrothermal Conditions: From Logarithmic to Power‐Law Healing
Frictional Properties of Simulated Chlorite Gouge at Hydrothermal Conditions: Implications for Subduction Megathrusts
Lower crustal earthquakes in the East African Rift System: Insights from frictional properties of rock samples from the Malawi rift
Temperature-dependent frictional properties of heterogeneous Hikurangi Subduction Zone input sediments, ODP Site 1124
An investigation into the role of time-dependent cohesion in interseismic fault restrengthening
The role of metasomatic alteration on frictional properties of subduction thrusts: An example from a serpentinite body in the Franciscan Complex, California
Temperature and Gas/Brine Content Affect Seismogenic Potential of Simulated Fault Gouges Derived From Groningen Gas Field Caprock
Velocity-dependent slip weakening by the combined operation of pressure solution and foliation development
Time‐Dependent Compaction as a Mechanism for Regular Stick‐Slips
Frictional Properties of Subduction Input Sediments at an Erosive Convergent Continental Margin and Related Controls on Décollement Slip Modes: The Costa Rica Seismogenesis Project
Extreme hydrothermal conditions at an active plate-bounding fault
Microphysically Derived Expressions for Rate‐and‐State Friction Parameters, <i>a</i>, <i>b</i>, and <i>D</i><sub><i>c</i></sub>
A comparison between rate-and-state friction and microphysical models, based on numerical simulations of fault slip
Frictional Properties of Simulated Fault Gouges from the Seismogenic Groningen Gas Field Under In Situ <i>P</i>–<i>T</i> ‐Chemical Conditions
Water vaporization promotes coseismic fluid pressurization and buffers temperature rise
Petrophysical, Geochemical, and Hydrological Evidence for Extensive Fracture‐Mediated Fluid and Heat Transport in the Alpine Fault's Hanging‐Wall Damage Zone
New approaches in experimental research on rock and fault behaviour in the Groningen gas field