A graphic processing unit (GPU) implementation of a meshless method for solving compressible flow problems is presented in this paper. Least-square fit is used to discretize the spatial derivatives of Euler equations and an upwind scheme is applied to estimate the flux terms. The compute unified device architecture (CUDA) C programming model is employed to efficiently and flexibly port the meshless solver from CPU to GPU. Considering the data locality of randomly distributed points, space-filling curves are adopted to re-number the points in order to improve the memory performance. Detailed evaluations are firstly carried out to assess the accuracy and conservation property of the underlying numerical method. Then the GPU accelerated flow s...
The paper presents the results of the implementation of computational algorithms of hydrodynamics fo...
Computational fluid dynamics (CFD) is an area of fluid mechanics that involves using numerical metho...
In the present age, rapid development in computing technology and high speed supercomputers has made...
A graphics processing unit (GPU) -accelerated meshless method is presented for solving two-dimension...
This paper presents an effort to implement a recently proposed meshless dynamic cloud method (Hong W...
This paper develops a recently proposed GPU based two-dimensional explicit meshless method (Ma et al...
This paper presents the development and implementation of a Meshless twophase incompressible fluid f...
This paper presents the development and implementation of a Meshless two-phase incompressible fluid ...
This project presents the development and implementation of a GPU-accelerated meshless two-phase inc...
This paper presents the development and implementation of a Meshless two-phase incompressible fluid ...
Modern graphics processing units (GPU) provide architectures and new programming models that enable ...
Graphical processing units (GPUs), characterized by significant computing performance, are nowadays ...
AbstractThe potential of GPU in scientific computation has been tested in many applications during r...
In this work we present ZEFR, a GPU accelerated flow solver based around the high-order accurate flu...
Researchers have recently used the new programmable capabilities of the Graphics Processing Unit (GP...
The paper presents the results of the implementation of computational algorithms of hydrodynamics fo...
Computational fluid dynamics (CFD) is an area of fluid mechanics that involves using numerical metho...
In the present age, rapid development in computing technology and high speed supercomputers has made...
A graphics processing unit (GPU) -accelerated meshless method is presented for solving two-dimension...
This paper presents an effort to implement a recently proposed meshless dynamic cloud method (Hong W...
This paper develops a recently proposed GPU based two-dimensional explicit meshless method (Ma et al...
This paper presents the development and implementation of a Meshless twophase incompressible fluid f...
This paper presents the development and implementation of a Meshless two-phase incompressible fluid ...
This project presents the development and implementation of a GPU-accelerated meshless two-phase inc...
This paper presents the development and implementation of a Meshless two-phase incompressible fluid ...
Modern graphics processing units (GPU) provide architectures and new programming models that enable ...
Graphical processing units (GPUs), characterized by significant computing performance, are nowadays ...
AbstractThe potential of GPU in scientific computation has been tested in many applications during r...
In this work we present ZEFR, a GPU accelerated flow solver based around the high-order accurate flu...
Researchers have recently used the new programmable capabilities of the Graphics Processing Unit (GP...
The paper presents the results of the implementation of computational algorithms of hydrodynamics fo...
Computational fluid dynamics (CFD) is an area of fluid mechanics that involves using numerical metho...
In the present age, rapid development in computing technology and high speed supercomputers has made...