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A DUAL MESH APPROACH TO ENHANCE ACCURACY OF THE BOUNDARY CONDITIONS FOR UNSTRUCTURED GRID MODELING OF TURBOMACHINERY FLOWS

机译:一种双网格方法,提高涡轮机流动非结构化网格建模的边界条件的准确性

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摘要

Although unstructured grids have gained wide acceptance in many engineering applications, they still suffer from difficulties in achieving high accuracy at the inflow, outflow and mixing-plane interface boundaries of multi-stage turbomachinery configurations. To overcome these difficulties and hence to increase the accuracy of unstructured grid methods, a novel dual mesh approach is proposed. In contrast to conventional CFD techniques, the dual mesh approach works on two sets of meshes at the boundaries: one is the original mesh and the other is an auxiliary surface mesh created at run time. By properly coupling of such double meshes, the dual mesh approach can effectively increase the accuracy and conservation of the solutions at the inflow, outflow and mixing-plane interface boundaries, and it can also enjoy most of the sophisticated numerical algorithms originally developed for the structured-grid boundary conditions. With both compressor and turbine test cases, the dual mesh approach is demonstrated to be superior to the conventional method while its CPU-time penalty is marginal. Additionally the dual mesh approach may be also useful for any structured CFD solvers subject to some restrictions on the structured grid distributions at the inflow, outflow and mixing-plane interface boundaries, e.g. mesh uniformity in the circumferential direction.
机译:虽然非结构网格在许多工程应用中获得了广泛的认可,他们仍然遭受在流入,流出实现高精度和多级涡轮机配置的混合平面接口边界困难。为了克服这些困难,因此,以增加的非结构化网格方法的准确性,一种新颖的双网状的方法,提出了相对于传统的CFD技术中,双网状方法适用于两组网格的边界处的:一种是原始网格而另一个是辅助表面网格在运行时创建。通过适当耦合,这样的双网格,双网状方法可以有效地提高解决方案的准确性和保护在流入,流出和混合平面接口边界,而且还可以享受大部分原本是为结构化开发的复杂的数值算法-Grid边界条件。与两个压缩机和涡轮机测试的情况下,双网状方法证明是优于常规的方法而其CPU时间损失是微不足道的。此外,该双网状方法可能还为任何构造CFD解算器受到在流入,流出的结构网格分布的一些限制和混合平面接口边界,例如有用在圆周方向上啮合的均匀性。

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