Area of research
Geophysics · Mechanics of Materials
Research interest
Research interests include Geology, Slip (aerodynamics), Fault gouge, Calcite, Shear (geology), and Fault (geology).
Frictional properties of actinolite-chlorite gouge at hydrothermal conditions
The physics of fault friction: insights from experiments on simulated gouges at low shearing velocities
Flow‐to‐Friction Transition in Simulated Calcite Gouge: Experiments and Microphysical Modeling
Frictional Properties of Simulated Chlorite Gouge at Hydrothermal Conditions: Implications for Subduction Megathrusts
Inelastic Deformation of the Slochteren Sandstone: Stress‐Strain Relations and Implications for Induced Seismicity in the Groningen Gas Field
Intergranular Clay Films Control Inelastic Deformation in the Groningen Gas Reservoir: Evidence From Split‐Cylinder Deformation Tests
Nanocrystalline Principal Slip Zones and Their Role in Controlling Crustal Fault Rheology
Deformation Behavior of Sandstones From the Seismogenic Groningen Gas Field: Role of Inelastic Versus Elastic Mechanisms
Brittle and semibrittle creep of Tavel limestone deformed at room temperature
Microscale cavitation as a mechanism for nucleating earthquakes at the base of the seismogenic zone
Mechanical behavior and microstructure of simulated calcite fault gouge sheared at 20–600°C: Implications for natural faults in limestones
Effects of healing on the seismogenic potential of carbonate fault rocks: Experiments on samples from the Longmenshan Fault, Sichuan, China
Interseismic re-strengthening and stabilization of carbonate faults by “non-Dieterich” healing under hydrothermal conditions
Superplastic nanofibrous slip zones control seismogenic fault friction
Frictional Properties and Microstructure of Calcite-Rich Fault Gouges Sheared at Sub-Seismic Sliding Velocities
Nanocrystalline slip zones in calcite fault gouge show intense crystallographic preferred orientation: Crystal plasticity at sub-seismic slip rates at 18–150 °C