Area of research
Computational Theory and Mathematics · Computational Mechanics
Research interest
Research focused on Poromechanics and Mechanics, with related work in Geomechanics, Biot number, Discretization. Notable publications include 'Convergence of iterative coupling for coupled flow and geomechanics', 'Phase-field modeling of a fluid-driven fracture in a poroelastic medium', and 'A quasi-static phase-field approach to pressurized fractures'.
Mathematical Theory of Nonlinear Single-Phase Poroelasticity
Phase-field modeling through iterative splitting of hydraulic fractures in a poroelastic medium
Phase-Field Modeling of Two Phase Fluid Filled Fractures in a Poroelastic Medium
Non-Newtonian Fluid Mechanics and Complex Flows
Phase-field modeling of proppant-filled fractures in a poroelastic medium
Phase-field modeling of a fluid-driven fracture in a poroelastic medium
A quasi-static phase-field approach to pressurized fractures
Numerical convergence study of iterative coupling for coupled flow and geomechanics
A Rigorous Derivation of the Equations for the Clamped Biot-Kirchhoff-Love Poroelastic Plate
Pressure jump interface law for the Stokes–Darcy coupling: confirmation by direct numerical simulations
Convergence of iterative coupling for coupled flow and geomechanics
ON THE INTERFACE LAW BETWEEN A DEFORMABLE POROUS MEDIUM CONTAINING A VISCOUS FLUID AND AN ELASTIC BODY
Theory of the dynamic Biot-Allard equations and their link to the quasi-static Biot system