collaborators

5 papers

physics.comp-ph2024

PyFR v2.0.3: Towards Industrial Adoption of Scale-Resolving Simulations

Freddie D. Witherden, Peter E. Vincent, Will Trojak +17

PyFR is an open-source cross-platform computational fluid dynamics framework based on the high-order Flux Reconstruction approach, specifically designed for undertaking high-accura…

math.NA2024

Hybridized Implicit-Explicit Flux Reconstruction Methods

Carlos A. Pereira, Brian C. Vermeire

For turbulent problems of industrial scale, computational cost may become prohibitive due to the stability constraints associated with explicit time discretization of the underlyin…

math.NA2024

Energy Conservative Relaxation-Free Runge-Kutta Schemes

Mohammad R. Najafian, Brian C. Vermeire

A wide range of physical phenomena exhibit auxiliary admissibility criteria, such as conservation of entropy or various energies, which arise implicitly under the exact solution of…

math.NA2023

Hybridized Formulations of Flux Reconstruction Schemes for Advection-Diffusion Problems

Carlos A. Pereira, Brian C. Vermeire

We present the hybridization of flux reconstruction methods for advection-diffusion problems. Hybridization introduces a new variable into the problem so that it can be reduced via…

physics.flu-dyn2014

Heterogeneous Computing on Mixed Unstructured Grids with PyFR

F. D. Witherden, B. C. Vermeire, P. E. Vincent

PyFR is an open-source high-order accurate computational fluid dynamics solver for mixed unstructured grids that can target a range of hardware platforms from a single codebase. In…