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Three-Dimensional Incompressible Navier-Stokes Flow Computations about Complete Configurations Using a Multiblock Unstructured Grid Approach

机译:使用多块非结构化网格方法的完整配置的三维不可压缩Navier-Stokes流量计算

摘要

A multiblock unstructured grid approach is presented for solving three-dimensional incompressible inviscid and viscous turbulent flows about complete configurations. The artificial compressibility form of the governing equations is solved by a node-based, finite volume implicit scheme which uses a backward Euler time discretization. Point Gauss-Seidel relaxations are used to solve the linear system of equations at each time step. This work employs a multiblock strategy to the solution procedure, which greatly improves the efficiency of the algorithm by significantly reducing the memory requirements by a factor of 5 over the single-grid algorithm while maintaining a similar convergence behavior. The numerical accuracy of solutions is assessed by comparing with the experimental data for a submarine with stem appendages and a high-lift configuration.
机译:提出了一种多块非结构网格方法,用于解决关于完整构型的三维不可压缩的无粘性和粘性湍流。用基于节点的有限体积隐式方案求解控制方程的人工可压缩形式,该方案使用后向Euler时间离散化。点高斯-塞德尔松弛用于在每个时间步求解方程的线性系统。这项工作在解决过程中采用了多块策略,与单网格算法相比,通过将内存需求显着降低了5倍,同时保持了类似的收敛行为,极大地提高了算法的效率。解决方案的数值精度是通过与带有茎附件和高升结构的潜艇的实验数据进行比较来评估的。

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