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首页> 外文期刊>International Journal for Numerical Methods in Engineering >parallel solvers for the transient multigroup neutron diffusion equations
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parallel solvers for the transient multigroup neutron diffusion equations

机译:瞬态多组中子扩散方程的并行求解器

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For the safety and the control of a nuclear power plant it is necessary to simulated to constituent processes on a computer system. The three-dimensional multigroup neutron diffusion equations are commonly used to describe the nuclear fission in the reactor core. They form a complicated system of coupled parabolic partial differential equations (PDEs) whose solution can involve very intensive computing. In this paper this system of PDEs is discretized using a special cell-centred mixed finite volume method (NEM-M0) in space, and a method that combines Crank-Nicholson and the BDF(2)-method in time. The linear equation systems which arise are solved with multi-grid as well as with preconditioned BiCGStab. The kernel of both solution methods is an effective Block-SOR method that makes use of the particular structure of the linear equation systems. The parallelization strategy is based on a grid partitioning that distributes the data and the work homogeneously on the processors. Finally, the program was tested for three typical reactor simulation problems on grids with differing coarseness. The speedup achieved by parallelizing multi-grid and preconditioned Bi-CGStab was outstanding for all examples; even superlinear in some cases. Moreover, the parallel execution times were better than the parallel execution times of other established reactor simulation codes.
机译:为了安全和控制核电站,有必要在计算机系统上模拟组成过程。三维多组中子扩散方程通常用于描述反应堆堆芯中的核裂变。它们形成耦合抛物线偏微分方程(PDE)的复杂系统,其解可能涉及非常密集的计算。在本文中,使用特殊的以细胞为中心的混合有限体积方法(NEM-M0)在空间中离散该PDEs系统,该方法将Crank-Nicholson和BDF(2)方法及时结合在一起。出现的线性方程组可以通过多网格以及经过预处理的BiCGStab求解。两种解决方法的核心都是有效的Block-SOR方法,它利用了线性方程组的特定结构。并行化策略基于网格分区,该网格分区将数据和工作均匀地分布在处理器上。最后,该程序针对具有不同粗糙度的网格上的三个典型反应堆仿真问题进行了测试。通过并行化多网格和预处理的Bi-CGStab所实现的加速对于所有示例都是出色的;在某些情况下甚至是超线性的。此外,并行执行时间比其他已建立的反应堆仿真代码的并行执行时间要好。

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