Area of research
Mechanics of Materials · Management, Monitoring, Policy and Law
Research interest
Research focused on Finite element method and Geotechnical engineering, with related work in Brittleness, Micromechanics, Grout. Notable publications include 'A Peridynamic-enhanced finite element method for Thermo–Hydro–Mechanical coupled problems in saturated porous media involving cracks', 'Temporal and spatial distribution of the grout pressure and its effects on lining segments during synchronous grouting in shield tunnelling', and 'A micromechanical model for induced anisotropic damage-friction in rock materials under cyclic loading'.
A micromechanical model for induced anisotropic damage-friction in rock materials under cyclic loading
Constitutive modeling of rock failure behavior under pressure conditions spanning the brittle–ductile transition
Matrix‐based implementation and GPU acceleration of hybrid FEM and peridynamic model for hydro‐mechanical coupled problems
Compressive failure and fragmentation of fused silica glass under quasi-static loading
A Peridynamic-enhanced finite element method for Thermo–Hydro–Mechanical coupled problems in saturated porous media involving cracks
Experimental investigation and micromechanics-based constitutive modeling of the transition from brittle to ductile behavior in saturated low-porosity rocks
Temporal and spatial distribution of the grout pressure and its effects on lining segments during synchronous grouting in shield tunnelling