首页> 外文会议>European PVM/MPI(Parallel Virtual Machine and Message Passing Interface) Users, Group Meeting; 20050918-21; Sorrento(IT) >A Parallel Exponential Integrator for Large-Scale Discretizations of Advection-Diffusion Models
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A Parallel Exponential Integrator for Large-Scale Discretizations of Advection-Diffusion Models

机译:对流扩散模型大规模离散化的并行指数积分器

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摘要

We propose a parallel implementation of the ReLPM (Real Leja Points Method) for the exponential integration of large sparse systems of ODEs, generated by Finite Element discretizations of 3D advection-diffusion models. The performance of our parallel exponential integrator is compared with that of a parallelized Crank-Nicolson (CN) integrator, where the local linear solver is a parallel BiCGstab accelerated with the approximate inverse preconditioner FSAI. We developed message passing codes written in Fortran 90 and using the MPI standard. Results on SP5 and CLX machines show that the parallel efficiency raised by the two algorithms is comparable. ReLPM turns out to be from 3 to 5 times faster than CN in solving realistic advection-diffusion problems, depending on the number of processors employed.
机译:我们为3D对流扩散模型的有限元离散化生成的ODE的大型稀疏系统的指数积分提出了ReLPM(真实Leja点方法)的并行实现。我们将并行指数积分器的性能与并行Crank-Nicolson(CN)积分器的性能进行了比较,后者的本地线性求解器是使用近似逆预处理器FSAI加速的并行BiCGstab。我们开发了使用Fortran 90编写并使用MPI标准的消息传递代码。 SP5和CLX计算机上的结果表明,两种算法所提高的并行效率是可比的。在解决实际的对流扩散问题上,ReLPM的速度比CN快3至5倍,具体取决于所使用的处理器数量。

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