DrNavid Hosseini
Research Associate in Computational Mechanics
Department of Earth Science & Engineering - Faculty of Engineering
- Research Associate in Computational MechanicsDepartment of Earth Science & Engineering - Faculty of Engineering
- Royal School of Mines, South Kensington Campus, United Kingdom
RESEARCH
Selected Publications
Extended-FEM Analysis of Injection-Induced Slip on a Fault with Rate-and-State Friction: Insights into Parameters that Control Induced Seismicity :: N. Hosseini, J.A. Priest, and D.W. Eaton :: Rock Mechanics and Rock Engineering (2023) :: 56: 4229–4250.
Modeling Fluid Flow in Fractured Porous Media with the Interfacial Conditions Between Porous Medium and Fracture :: N. Hosseini and A.R. Khoei :: Transport in Porous Media (2021) :: 139, 109-129.
Numerical simulation of proppant transport and tip screen-out in hydraulic fracturing with the extended finite element method :: N. Hosseini and A.R. Khoei :: International Journal of Rock Mechanics and Mining Sciences (2020) :: 128, 104247.
Numerical modeling of density-driven solute transport in fractured porous media with the extended finite element method :: N. Hosseini, Z. Bajalan, and A.R. Khoei :: Advances in Water Resources (2020) :: 136, 103453.
Numerical modeling of two-phase fluid flow in deformable fractured porous media using the extended finite element method and an equivalent continuum model :: A.R. Khoei, N. Hosseini, and T. Mohammadnejad :: Advances in Water Resources (2016) :: 94, 510–528.
Extended-FEM Analysis of Injection-Induced Slip on a Fault with Rate-and-State Friction: Insights into Parameters that Control Induced Seismicity :: N. Hosseini, J.A. Priest, and D.W. Eaton :: Rock Mechanics and Rock Engineering (2023) :: 56: 4229–4250.
Modeling Fluid Flow in Fractured Porous Media with the Interfacial Conditions Between Porous Medium and Fracture :: N. Hosseini and A.R. Khoei :: Transport in Porous Media (2021) :: 139, 109-129.
Numerical simulation of proppant transport and tip screen-out in hydraulic fracturing with the extended finite element method :: N. Hosseini and A.R. Khoei :: International Journal of Rock Mechanics and Mining Sciences (2020) :: 128, 104247.
Numerical modeling of density-driven solute transport in fractured porous media with the extended finite element method :: N. Hosseini, Z. Bajalan, and A.R. Khoei :: Advances in Water Resources (2020) :: 136, 103453.
Numerical modeling of two-phase fluid flow in deformable fractured porous media using the extended finite element method and an equivalent continuum model :: A.R. Khoei, N. Hosseini, and T. Mohammadnejad :: Advances in Water Resources (2016) :: 94, 510–528.