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Parallel computation of unsteady three-dimensional incompressible viscous flow using an unstructured multigrid method

机译:使用非结构化多重网格方法并行计算非稳态三维不可压缩粘性流

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The development and validation of a parallel unstructured tetrahedral non-nested multigrid (MG) method for simulation of unsteady 3D incompressible viscous flow is presented. The Navier-Stokes solver is based on the artificial compressibility method (ACM) and a higher-order characteristics-based finite-volume scheme on unstructured MG. Unsteady flow is calculated with an implicit dual time stepping scheme. The parallelization of the solver is achieved by a MG domain decomposition approach (MG-DD), using the Single Program Multiple Data (SPMD) programming paradigm. The Message-Passing Interface (MPI) Library is used for communication of data and loop arrays are decomposed using the OpenMP standard. The parallel codes using single grid and MG are used to simulate steady and unsteady incompressible viscous flows for a 3D lid-driven cavity flow for validation and performance evaluation purposes. The speedups and efficiencies obtained by both the parallel single grid and MG solvers are reasonably good for all test cases, using up to 32 processors on the SGI Origin 3400. The parallel results obtained agree well with those of serial solvers and with numerical solutions obtained by other researchers, as well as experimental measurements.
机译:提出了一种用于模拟非稳态3D不可压缩粘性流的并行非结构化四面体非嵌套多网格(MG)方法的开发和验证。 Navier-Stokes求解器基于人工可压缩性方法(ACM)和非结构化MG的基于高阶特征的有限体积方案。用隐式双重时间步长方案计算非恒定流。求解器的并行化是通过使用单程序多数据(SPMD)编程范例的MG域分解方法(MG-DD)实现的。消息传递接口(MPI)库用于数据通信,并且循环数组使用OpenMP标准进行分解。使用单网格和MG的并行代码用于模拟3D盖驱动腔流动的稳态和非稳态不可压缩粘性流,以进行验证和性能评估。在SGI Origin 3400上最多使用32个处理器,通过并行单网格和MG解算器获得的加速和效率在所有测试案例中都相当不错。获得的并行结果与串行解算器的数值和通过其他研究人员,以及实验测量。

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