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Contour Dynamics Simulations with a Parallel Hierarchical-Element Method

机译:轮廓动态模拟具有并行分层元素方法

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Many two-dimensional incompressible inviscid vortex flows can be simulated with high efficiency by means of the contour dynamics method. Several applications require the use of a hierarchical-element method (HEM), a modified version of the classical contour dynamics scheme by applying a fast multipole method, in order to accelerate the computations substantially. In this paper it is shown that the acceleration of contour dynamics simulations by means of the HEM can be increased further by parallelising the HEM algorithm. Speed-up, load balance and scalability are parallel performance features which are studied for several test examples. Furthermore, typical simulations are shown, including an application of vortex dynamics near the pole of a rotating sphere. The HEM has been parallelised using OpenMP and tested with up to 16 processors on an Origin 3800 CC-NUMA computer.
机译:通过轮廓动力学方法,可以高效率模拟许多二维不可压缩的涡流涡流流。通过应用快速多极方法,若干应用程序需要使用分层元素方法(HEM),经典轮廓动态方案的修改版本,以便基本上加速计算。在本文中,示出通过平行于下摆算法进一步提高借助于下摆的轮廓动力学模拟的加速。加速,负载平衡和可扩展性是对多个测试示例研究的并行性能特征。此外,示出了典型的模拟,包括在旋转球的杆附近施加涡流动态。 SEM已使用OpenMP并行化,并在原点3800 CC-NUMA计算机上使用最多16个处理器进行测试。

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