summary:We study the use of a GPU for the numerical approximation of the curvature dependent flows of graphs - the mean-curvature flow and the Willmore flow. Both problems are often applied in image processing where fast solvers are required. We approximate these problems using the complementary finite volume method combined with the method of lines. We obtain a system of ordinary differential equations which we solve by the Runge-Kutta-Merson solver. It is a robust solver with an automatic choice of the integration time step. We implement this solver on CPU but also on GPU using the CUDA toolkit. We demonstrate that the mean-curvature flow can be successfully approximated in single precision arithmetic with the speed-up almost 17 on the Nv...
Graphics processor units (GPU) that are originally designed for graphics rendering have emerged as m...
This paper presents the implementation of a HLLC finite volume solver using GPU technology for the s...
Abstract. Modern GPUs are well suited for performing image processing tasks. We utilize their high c...
summary:We study the use of a GPU for the numerical approximation of the curvature dependent flows o...
Modern graphics hardware has emerged as a lowcost massively parallel computing platform, allowing sc...
Computational fluid dynamics has seen a surge of popularity as a tool for visual effects animators o...
A graphics processing unit (GPU) is utilized to apply the direct-forcing immersed boundary method. T...
The advent of general purpose computing on graphics cards has led to significant software speedup in...
As one of the important tasks in digital terrain analysis, the calculation of flow accumulations fro...
Key words: graphics processing units, unstructured finite volume method, computational fluid dynam...
Graphics processing unit (GPU) has become a powerful computation platform not only for graphic rende...
Surface curvature is used in a number of areas in computer graphics including mesh simplification, s...
This paper presents GPU parallelization for a computational fluid dynamics solver which works on a m...
Heterogeneous and parallel computing systems are increasingly appealing to high-performance computin...
This webinar discusses how NVIDIA GPUs and NVIDIA CUDA can enable high-fidelity Computational Fluid ...
Graphics processor units (GPU) that are originally designed for graphics rendering have emerged as m...
This paper presents the implementation of a HLLC finite volume solver using GPU technology for the s...
Abstract. Modern GPUs are well suited for performing image processing tasks. We utilize their high c...
summary:We study the use of a GPU for the numerical approximation of the curvature dependent flows o...
Modern graphics hardware has emerged as a lowcost massively parallel computing platform, allowing sc...
Computational fluid dynamics has seen a surge of popularity as a tool for visual effects animators o...
A graphics processing unit (GPU) is utilized to apply the direct-forcing immersed boundary method. T...
The advent of general purpose computing on graphics cards has led to significant software speedup in...
As one of the important tasks in digital terrain analysis, the calculation of flow accumulations fro...
Key words: graphics processing units, unstructured finite volume method, computational fluid dynam...
Graphics processing unit (GPU) has become a powerful computation platform not only for graphic rende...
Surface curvature is used in a number of areas in computer graphics including mesh simplification, s...
This paper presents GPU parallelization for a computational fluid dynamics solver which works on a m...
Heterogeneous and parallel computing systems are increasingly appealing to high-performance computin...
This webinar discusses how NVIDIA GPUs and NVIDIA CUDA can enable high-fidelity Computational Fluid ...
Graphics processor units (GPU) that are originally designed for graphics rendering have emerged as m...
This paper presents the implementation of a HLLC finite volume solver using GPU technology for the s...
Abstract. Modern GPUs are well suited for performing image processing tasks. We utilize their high c...