基于格子Boltzmann 方法的多孔介质流动模拟GPU 加速

朱炼华, 郭照立 - 计算物理, 2015 - cjcp.org.cn
利用NVIDIA CUDA 平台, 在GPU 上结合稀疏存贮算法实现基于格子Boltzmann
方法的孔隙尺度多孔介质流动模拟加速, 测试该算法相对基本算法的性能 …

大规模声学边界元法的GPU 并行计算

张锐, 文立华, 校金友 - 计算物理, 2015 - cjcp.org.cn
提出一种大规模声学边界元法的高效率, 高精度GPU 并行计算方法. 基于Burton-Miller
边界积分方程, 推导适于GPU 的并行计算格式并实现了传统边界元法的GPU 加速算法 …

GPU accelerated lattice Boltzmann simulation of flow in porous media

L ZHU, Z GUO - Chinese Journal of Computational Physics, 2015 - cjcp.org.cn
A sparse lattice representation lattice Boltzmann method algorithm is implemented on
Graphics Processing Units (GPU) to accelerate pore scale flow simuation. Prefomance …

激波与火焰面相互作用数值模拟的GPU 加速

蒋华, 董刚, 陈霄 - 计算物理, 2016 - cjcp.org.cn
为考察计算机图形处理器(GPU) 在计算流体力学中的计算能力, 采用基于CPU/GPU
异构并行模式的方法对激波与火焰界面相互作用的典型可压缩反应流进行数值模拟 …

GPU-accelerated boundary element method for large-scale problems in acoustics

R ZHANG, L WEN, J XIAO - Chinese Journal of Computational Physics, 2015 - cjcp.org.cn
A boundary element method (BEM) for large-scale acoustic analysis is accelerated
efficiently and precisely with Graphics Processing Units (GPUs). Based on Burton-Miller …

A Numerical Study of Interactions Between Shock Waves and Flame with GPU Acceleration

H JIANG, G DONG, X CHEN - Chinese Journal of Computational …, 2016 - cjcp.org.cn
To study performance of graphic processing unit (GPU) for computational fluid dynamics,
simulation on interactions between shock waves and a flame interface, a typical …

GPU Acceleration of Partial Differential Equation Solvers

P Iosifidis, P Weit, P Marlappan… - … , Distributed, Grid and …, 2015 - pure.qub.ac.uk
Differential equations are often directly solvable by analytical means only in their one
dimensional version. Partial differential equations are generally not solvable by analytical …