Area of research
Mechanics of Materials · Civil and Structural Engineering
Research interest
Research interests include Peridynamics, Discretization, Finite element method, Materials science, Computer science, and Mathematics.
Peridynamic correspondence model for nearly-incompressible finite elasticity
Elastoplastic peridynamic formulation for materials with isotropic and kinematic hardening
A general ordinary state-based peridynamic formulation for anisotropic materials
Matrix‐based implementation and GPU acceleration of hybrid FEM and peridynamic model for hydro‐mechanical coupled problems
A Peridynamic-enhanced finite element method for Thermo–Hydro–Mechanical coupled problems in saturated porous media involving cracks
A multiscale peridynamic framework for modelling mechanical properties of polymer-based nanocomposites
Accurate computation of partial volumes in 3D peridynamics
A multiscale numerical homogenization-based method for the prediction of elastic properties of components produced with the fused deposition modelling process
A peridynamic differential operator-based scheme for the extended bond-based peridynamics and its application to fracture problems of brittle solids
A new method based on Taylor expansion and nearest-node strategy to impose Dirichlet and Neumann boundary conditions in ordinary state-based Peridynamics
A novel and effective way to impose boundary conditions and to mitigate the surface effect in state‐based Peridynamics
Overall equilibrium in the coupling of peridynamics and classical continuum mechanics
Numerical simulation of forerunning fracture in saturated porous solids with hybrid FEM/Peridynamic model
Simulation of chemo-thermo-mechanical problems in cement-based materials with Peridynamics
Hybrid FEM and peridynamic simulation of hydraulic fracture propagation in saturated porous media
Experimental and numerical fracture analysis of the plain and polyvinyl alcohol fiber-reinforced ultra-high-performance concrete structures
Coupling of FEM and ordinary state-based peridynamics for brittle failure analysis in 3D
Fatigue degradation strategies to simulate crack propagation using peridynamic based computational methods
A local collocation method to construct Dirichlet-type absorbing boundary conditions for transient scalar wave propagation problems
Static solution of crack propagation problems in Peridynamics
An adaptive multi-grid peridynamic method for dynamic fracture analysis
A generalized finite difference method based on the Peridynamic differential operator for the solution of problems in bounded and unbounded domains
Coupling of FEM meshes with Peridynamic grids
OpenCL implementation of a high performance 3D Peridynamic model on graphics accelerators
An enhanced coupling of PD grids to FE meshes
A discussion on failure criteria for ordinary state-based peridynamics
Coupling of 2D discretized Peridynamics with a meshless method based on classical elasticity using switching of nodal behaviour
The meshless finite point method for transient elastodynamic problems
An effective way to couple FEM meshes and Peridynamics grids for the solution of static equilibrium problems
A coupled meshless finite point/Peridynamic method for 2D dynamic fracture analysis