利用CUDA开发热传导过程的3D-CFD代码

Yogesh D. Bhadke, Manik R. Kawale, Vandana Inamdar
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引用次数: 3

摘要

热传导是一种由三维瞬态偏微分方程控制的自然现象。偏微分方程可以用有限差分法、有限体积法、有限元法等多种数值方法求解。这些方法需要大量的计算来求解代数方程组。图形处理器(Graphics processing unit, GPU)可以作为协处理器来处理CPU的计算,从而节省大量的计算时间。GPU计算的主要专有框架是由NVidia提供的CUDA。它可以用于解决计算密集型任务。本工作的目标是在CUDA平台上开发一个热传导代码,该代码将在GPU框架下求解代数方程系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of 3D-CFD code for heat conduction process using CUDA
Heat conduction is natural phenomenon which is governed by three dimensional, transient partial differential equation. The partial differential equation can be solved by many numerical method such as finite difference method, finite volume method, finite element method etc. These methods require heavy computation to solve the system of algebraic equations. Graphics processing unit (GPU) can be used to handle the computation of CPU as a co-processor so the GPU will save a lot of time for computation. The dominant proprietary framework for GPU computing is CUDA, provided by NVidia. It can be used to solve computation intensive task. The objective of this work is to develop a heat conduction code on CUDA platform, which will solve the system of algebraic equations using GPU framework.
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