First- and second-order accurate numerical methods, implemented for CPUs, underpin the majority of industrial CFD solvers. Whilst this technology has proven very successful at solving steady-state problems via a Reynolds Averaged Navier-Stokes approach, its utility for undertaking scaleresolving simulations of unsteady flows is less clear. High-order methods for unstructured grids and GPU accelerators have been proposed as an enabling technology for unsteady scale-resolving simulations of flow over complex geometries. In this study we systematically compare accuracy and cost of the high-order Flux Reconstruction solver PyFR running on GPUs and the industry-standard solver STAR-CCM+ running on CPUs when applied to a range of unsteady flow pr...
In this study the GPU-accelerated solver PyFR is used to simu- late flow over a NACA0021 aerofoil in...
Aerospace applications, including but not limited to the aerodynamics of slats and flaps, the aeroac...
The study was undertaken as part of a larger effort to establish a common computational fluid dynami...
Turbulent incompressible flows play an important role in a broad range of natural and industrial pro...
In this work we present ZEFR, a GPU accelerated flow solver based around the high-order accurate flu...
This paper describes the GPU accelerated MBFLO2 multi-block turbulent flow solver completely in doub...
PyFR is an open-source high-order accurate computational fluid dynam-ics solver for mixed unstructur...
High-order numerical methods for unstructured grids combine the superior accuracy of high-order spec...
The doctoral work compares two numerical approaches, the second-order finite-volume method and a new...
Modern hardware architectures such as GPUs and manycore processors are characterised by an abundance...
Modern graphics processing units (GPU) provide architectures and new programming models that enable ...
Graphical processing units (GPUs), characterized by significant computing performance, are nowadays ...
Real-time fluid engineering simulations require significant computational power and high-resolution ...
International audienceWe present a GPU accelerated solver for simulations of bluff body flows in 2D ...
Modern hardware architectures such as GPUs and manycore processors are characterised by an abundance...
In this study the GPU-accelerated solver PyFR is used to simu- late flow over a NACA0021 aerofoil in...
Aerospace applications, including but not limited to the aerodynamics of slats and flaps, the aeroac...
The study was undertaken as part of a larger effort to establish a common computational fluid dynami...
Turbulent incompressible flows play an important role in a broad range of natural and industrial pro...
In this work we present ZEFR, a GPU accelerated flow solver based around the high-order accurate flu...
This paper describes the GPU accelerated MBFLO2 multi-block turbulent flow solver completely in doub...
PyFR is an open-source high-order accurate computational fluid dynam-ics solver for mixed unstructur...
High-order numerical methods for unstructured grids combine the superior accuracy of high-order spec...
The doctoral work compares two numerical approaches, the second-order finite-volume method and a new...
Modern hardware architectures such as GPUs and manycore processors are characterised by an abundance...
Modern graphics processing units (GPU) provide architectures and new programming models that enable ...
Graphical processing units (GPUs), characterized by significant computing performance, are nowadays ...
Real-time fluid engineering simulations require significant computational power and high-resolution ...
International audienceWe present a GPU accelerated solver for simulations of bluff body flows in 2D ...
Modern hardware architectures such as GPUs and manycore processors are characterised by an abundance...
In this study the GPU-accelerated solver PyFR is used to simu- late flow over a NACA0021 aerofoil in...
Aerospace applications, including but not limited to the aerodynamics of slats and flaps, the aeroac...
The study was undertaken as part of a larger effort to establish a common computational fluid dynami...