Area of research
Mechanics of Materials · Civil and Structural Engineering
Research interest
Research interests include Rock Mechanics and Modeling, Landslides and related hazards, Tunneling and Rock Mechanics, and Geotechnical Engineering and Underground Structures.
FDEM modeling of the fracture, fragmentation and collapse process of rock masses with pre-existing joints by smooth blasting during deep tunnelling
Porous grain-based modeling of coral reef limestone: revealing heterogeneity and strain rate effects
Analysis of toppling failure mechanisms in anti-dip slopes based on FDEM simulation
Modeling of hydraulic fracturing process in crystalline rock reflecting actual mineral distribution using FDEM based on extrinsic cohesive zone model
Numerical simulation on the effect of cold shock on the initiation and propagation of microcracks in granite with different grain sizes
Mechanism and grade prediction of tunnel floor heave in gently inclined layered rock masses
A coupled humidity diffusion and swelling stress damage model with large deformation analysis and application in studying the swelling behaviors of skarn surrounding a tunnel
Investigating the crack propagation processes of grouted / ungrouted fissured tunnel specimens using 3D printing technology and SPH simulation method
Analysis of step-path failure mechanisms in rock slopes with en-echelon joints based on FDEM simulation
State-of-the-Art Review and Prospect of Modelling the Dynamic Fracture of Rocks Under Impact Loads and Application in Blasting
A quantitative evaluation method for tunnel excavation disturbance based on a combined finite-discrete element method
Experimental Investigation of Mechanical Behavior and Damage Evolution of Coal Materials Subjected to Cyclic Triaxial Loads with Increasing Amplitudes.
Enhancing the self-healing properties of concrete with magnesium oxide expander and super absorbent polymer for resilient infrastructure
Behavior of Masonry Walls and Building Envelopes Subjected to Differential Settlement Simulated with a GPGPU-parallelized FDEM
Insights Into the Dynamic Fracturing Behaviours of Rocks Under Multiaxial Static and Dynamic Coupled Loads Through 3D FDEM With Various Contact Algorithms and Cohesive Zone Models
Modelling dynamic fracture and fragmentation of rocks under multiaxial coupled static and dynamic loads with a parallelised 3D FDEM
Development of a GPGPU-parallelized FDEM based on extrinsic cohesive zone model with master-slave algorithm
Development of a GPGPU-parallelized 3-D FDEM with a novel and simple implementation of extrinsic cohesive zone model
Mapping the properties of wake-induced vibration on a circular cylinder
Development of a finite-discrete element method with finite-strain elasto-plasticity and cohesive zone models for simulating the dynamic fracture of rocks
Three-dimensional modelling on the impact fracture of glass using a GPGPU-parallelised FDEM
Tunnel Lining Segment Deformation and Cracking Mechanisms during Tunneling in Complex Mixed Grounds with the Combined Mining and Shield Tunneling Method
Advances on Thermally Conductive Epoxy‐Based Composites as Electronic Packaging Underfill Materials—A Review
Hybrid Finite-Discrete Element Modelling of Various Rock Fracture Modes during Three Conventional Bending Tests
The State of the Art and New Insight into Combined Finite–Discrete Element Modelling of the Entire Rock Slope Failure Process
Study on fracture behavior of molars based on three-dimensional high-precision computerized tomography scanning and numerical simulation.
Investigation of the Dynamic Pure-Mode-II Fracture Initiation and Propagation of Rock during Four-Point Bending Test Using Hybrid Finite–Discrete Element Method
PFP@PLGA/Cu12Sb4S13-mediated PTT ablates hepatocellular carcinoma by inhibiting the RAS/MAPK/MT-CO1 signaling pathway
Combined Finite‐Discrete Element Modelling of Dynamic Rock Fracture and Fragmentation during Mining Production Process by Blast
FDEM Modelling of Rock Fracture Process during Three‐Point Bending Test under Quasistatic and Dynamic Loading Conditions