NONLINEAR TWO-DIMENSIONAL ELASTIC INVERSION OF MULTIOFFSET SEISMIC DATA.
DOI: 10.1190/1.1442384
Elastic wavefield inversion and the adjoint operation for the elastic wave equation.
Elastic wave-field inversion of reflection and transmission data
DOI: 10.1190/1.1442510
Inversion of seismic wavefield data for P-and S-wave velocity
DOI: 10.1071/EG988312
Inversion = migration + tomography
DOI: 10.1190/1.1442625
The lattice Boltzmann phononic lattice solid
DOI: 10.1007/BF01341765
A LATTICE SOLID MODEL FOR THE NONLINEAR DYNAMICS OF EARTHQUAKES
Finite differences on minimal grids
DOI: 10.1190/1.1443700
Numerical simulation of faults and shear zones
The Phononic Lattice Solid By Interpolation For Modelling P Waves In Heterogeneous Media
The Phononic Lattice Solid With Fluids For Modelling Non‐Linear Solid‐Fluid Interactions
Simulation of the frictional stick-slip instability
DOI: 10.1007/BF00874324
Velocity weakening in a dynamical model of friction
DOI: 10.1007/BF00876050
Anisotropic wave propagation through finite-difference grids
DOI: 10.1190/1.1443849
Tensorial formulation of the wave equation for modelling curved interfaces
Simulation-based comparison of four site-response estimation techniques
Numerical simulation of earthquake faults with gouge: Toward a comprehensive explanation for the heat flow paradox
DOI: 10.1029/98jb01490
The weakness of earthquake faults
DOI: 10.1029/1998GL900231
The Lattice Solid Model to Simulate the Physics of Rocks and Earthquakes: Incorporation of Friction
Absorbing boundary and free-surface conditions in the phononic lattice solid by interpolation
Accelerating seismic energy release and evolution of event time and size statistics: Results from two heterogeneous cellular automaton models
DOI: 10.1007/PL00001081
Extension of the lattice solid model to incorporate temperature related effects
DOI: 10.1007/PL00001065
Numerical simulation of localisation phenomena in a fault zone
DOI: 10.1007/PL00001063
Evolution of stress deficit and changing rates of seismicity in cellular automation models of earthquake faults
Evolution of stress deficit and changing rates of seismicity in cellular automaton models of earthquake faults
DOI: 10.1007/PL00001080
Load-unload response ratio and accelerating moment/energy release critical region scaling and earthquake prediction
Long-range automaton models of earthquakes: Power-law accelerations, correlation evolution, and mode-switching
Parallel simulation system for earthquake generation: Fault analysis modules and parallel coupling analysis
DOI: 10.1002/cpe.628
Simulation of the influence of rate- and state-dependent friction on the macroscopic behavior of complex fault zones with the lattice solid model
Simulation of the Load-Unload Response Ratio and critical sensitivity in the lattice solid model
Simulation of the micro-physics of rocks using LSMearth
Introduction: Earthquake Processes: Physical Modelling, Numerical Simulation and Data Analysis, Part II
Stress correlation function evolution in lattice solid elasto-dynamic models of shear and fracture zones and earthquake prediction
A 2D numerical model for simulating the physics of fault systems
Efficient implementation of complex particle shapes in the lattice solid model
Finite element simulation of stress evolution in a frictional contact system
Formation of spinel from olivine
DOI: 10.1063/1.1675939
Accelerating precursory activity within a class of earthquake analogue automata
Computational earthquake science part I
Finite element analysis of fault bend influence on stick-slip instability along an intra-plate fault
Statistical tests of Load-Unload Response Ratio signals by Lattice Solid Model: Implication to tidal triggering and earthquake prediction
A parallel implementation of the lattice solid model for the simulation of rock mechanics and earthquake dynamics
Computational earthquake science part II
Spatio-temporal scanning and statistical test of the accelerating moment release (AMR) model using Australian earthquake data
ACcESS: Australia's contribution to the ISERVO institute's development
DOI: 10.1109/MCSE.2005.64
A unified friction description and its application to the simulation of frictional instability using the finite element method
Computational earthquake physics PART I: Introduction
Dynamic rupture in a 3-D particle-based simulation of a rough planar fault
Implementation of particle-scale rotation in the 3-D lattice solid model
Effect of rolling on dissipation in fault gouges
Computational earthquake physics Part II: Introduction
Construction of an intraplate fault system model of South Australia, and simulation tool for the iSERVO institute seed project
Stress reorientation and LURR: Implication for earthquake prediction using LURR
Finite element modeling of interacting fault systems
Earthquake Trend Around Sumatra Indicated by a New Implementation of LURR Method
Modeling wing crack extension: Implications for the ingredients of discrete element model
Macroscopic elastic properties of regular lattices
VI. The ESyS_Particle: A new 3-D discrete element model with single particle rotation
New Progress in LURR-Integrating with the Dimensional Method
Lattice solid/Boltzmann microscopic model to simulate solid/fluid systems—A tool to study creation of fluid flow networks for viable deep geothermal energy
Simulation of plume dynamics by the Lattice Boltzmann Method
DOI: 10.1093/gji/ggx279
Simulation of regimes of convection and plume dynamics by the thermal Lattice Boltzmann Method
Comparison of convection for Reynolds and Arrhenius temperature dependent viscosities
Elastic versus acoustic inversion for marine surveys
DOI: 10.1093/gji/ggy166
A concise python implementation of the lattice Boltzmann method on HPC for geo-fluid flow
DOI: 10.1093/gji/ggz423
Particle fragmentation based on strain energy field
Beverloo law for hopper flow derived from self-similar profiles
Optimal Wetting Angles in Lattice Boltzmann Simulations of Viscous Fingering
Optimal surface-tension isotropy in the Rothman-Keller color-gradient lattice Boltzmann method for multiphase flow
Influence of Wetting on Viscous Fingering Via 2D Lattice Boltzmann Simulations
Damage separation model: A replaceable particle method based on strain energy field
Phase space study of viscous fingering and saturation pre- and post-breakthrough using lattice Boltzmann simulations of two-phase flow
Calibration of discrete element modeling: Scaling laws and dimensionless analysis
A direct numerical verification of tidal locking mechanism using the discrete element method
Convection-Diffusion with the Colour Gradient Lattice Boltzmann Method for Three-Component, Two-Phase Flow
Volatiles Release from Metal-Silicate Interactions in Magma Oceans During Planetary Accretion
Models of plate tectonics with the Lattice Boltzmann Method
Extracting fundamental parameters of 2D natural thermal convection using convolutional neural networks
DOI: 10.1063/5.0198004
Progress and perspectives on using the Lattice Boltzmann Method for geodynamics simulation research
The Thermal Lattice Boltzmann Method: new developments, strong scaling to 300K cores, and potential to yield major advancements in geodynamics
A benchmark for finite Prandtl number convection: comparison of Boltzmann and Navier–Stokes solutions
DOI: 10.1093/gji/ggaf221
A proposed framework to address metric inflation in research publications