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Improved Performance For Nodal Spectral Element Operators

机译:节点谱元素算符的改进性能

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The computational performance of the nodal spectral element method (SEM) fortetrahedral grids is evaluated in the context of a high-performance computing platform. The elemental SEM operator is accelerated by the symmetry-based factorization technique of Hesthaven and Teng (SIAM J. Sci. Comp. 21, p. 2352, 2000), which results in a reduced number of floating point operations and memory accesses. However, performance evaluation reveals that a naive implementation of the algorithm causes a severe degradation of computational efficiency. Two algorithmic modifications are proposed which regain (and partly exceed) the efficiency of the original, non-factorized operator and thus recover the asymptotic 9/5 speedup due to factorization.
机译:在高性能计算平台的背景下,评估了四面体网格的节点谱元素法(SEM)的计算性能。 Hesthaven和Teng基于对称性的因式分解技术(SIAM J. Sci。Comp。21,第2352页,2000年)加快了元素SEM运算符的使用,从而减少了浮点运算和内存访问的次数。但是,性能评估表明,该算法的幼稚实现会严重降低计算效率。提出了两种算法修改方案,它们重新获得(并部分超过了)原始非因数运算符的效率,并因此恢复了因因式分解的渐近9/5加速。

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