collaborators

4 papers

physics.geo-ph2025

Quantifying the influence of fault geometry via mesh morphing with applications to earthquake dynamic rupture and thermal models of subduction

Gabrielle M. Hobson, Dave A. May, Alice-Agnes Gabriel

Subsurface geometries are often poorly constrained, yet they exert first-order control on key geophysical processes, including subduction zone thermal structure and earthquake rupt…

physics.geo-ph2025

Delayed dynamic triggering and enhanced high-frequency seismic radiation due to brittle rock damage in 3D multi-fault rupture simulations

Zihua Niu, Alice-Agnes Gabriel, Yehuda Ben-Zion

Using a novel high-performance computing implementation of a nonlinear continuum damage breakage model, we explore interactions between 3D co-seismic off-fault damage, seismic radi…

physics.geo-ph2025

A Discontinuous Galerkin Method for Simulating 3D Seismic Wave Propagation in Nonlinear Rock Models: Verification and Application to the 2015 Mw 7.8 Gorkha Earthquake

Zihua Niu, Alice-Agnes Gabriel, Sebastian Wolf +3

The nonlinear mechanical responses of rocks and soils to seismic waves play an important role in earthquake physics, influencing ground motion from source to site. Continuous geoph…

physics.geo-ph2024

Ground Motion Characteristics of Cascading Earthquakes in a Multiscale Fracture Network

Kadek Hendrawan Palgunadi, Alice-Agnes Gabriel, Dmitry Igor Garagash +3

Fault zones exhibit geometrical complexity and are often surrounded by multiscale fracture networks within their damage zones, influencing rupture dynamics and near-field ground mo…