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A parallel adaptive fast multipole method for high performance vortex method based simulations

机译:基于高性能Vortex方法的平行自适应快速多极方法

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A fast vortex method for the simulation of turbulent flows based on a parallel implementation of the Fast Multipole Method (FMM) is presented. The vortex method includes a hybrid vortex filament/sheet representation of the flow field, a vortex filament creation model that imitates the physical vortex self-replication process, and a hairpin removal and reconnection mechanism to limit the number and scale of vortical structures to those that are dynamically essential. The FMM, which is used to reduce the operation count in computing the velocity field, is the main focus of this paper. Two related FMM methods, referred to as the uniform and the adaptive FMM, are described. Both methods are parallelized using the Message Passing Inter face (MPI) library, and timings for single and multiple processor calculations are given. Results are presented from a simulation of the flow past a prolate spheroid in a uniform stream at 30 deg angle of attack.
机译:提出了一种基于快速多极法(FMM)的平行实现模拟湍流流动的快速涡流方法。涡旋方法包括流场的混合涡旋灯丝/纸张表示,涡旋灯丝创建模型模拟物理涡流自复制过程,以及牵引型拆除和重新连接机制,以限制志性结构的数量和规模动态必不可少。用于减少计算速度场的操作计数的FMM是本文的主要焦点。描述了两个相关的FMM方法,称为均匀和自适应FMM。两种方法都使用通过脸部(MPI)库的消息并行化,并给出单个和多个处理器计算的时间。结果以均匀的攻角均匀的流动在均匀的流中的流动模拟中提出。

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