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Verification of RANS Turbulence Models in Loci-CHEM using the Method of Manufactured Solutions

机译:使用制造解决方案方法验证LOCI-CHEM中的RAN湍流模型

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An approach for verifying Reynolds-Averaged Navier-Stokes (RANS) turbulence models in Computational Fluid Dynamics (CFD) codes is presented. This approach relies on smooth, non-physical Manufactured Solutions which are chosen so as to provide contributions from all of the terms in the turbulence transport equations including convection, diffusion, production, and destruction. The Loci-CHEM CFD code is employed to solve the steady-state, compressible RANS equations in two-dimensions. The turbulence model verified is the baseline version of Menter's k-co model. Special attention is paid to the blending function which allows the model to switch between a k-co and a transformed k-s model. Results are presented for the observed order of accuracy on families of Cartesian structured grids, skewed curvilinear structured grids, and unstructured triangular grids. The Manufactured Solutions clearly identify problems on skewed meshes which cause the diffusion operator to become inconsistent (i.e., the discretization error does not decrease with mesh refinement). An alternative formulation for the diffusion operator is implemented and the Manufactured Solutions are shown to converge in a second-order manner with mesh refinement for the structured grids. Preliminary investigations on the unstructured meshes indicate that while the code is still consistent, the observed order of accuracy is reduced to first order.
机译:验证雷诺平均纳维 - 斯托克斯(RANS)湍流模型在计算流体动力学(CFD)代码的方法提出。这种方法依赖于被选择,以便提供从所有在湍流输运方程包括对流,扩散,生产,和破坏的术语的贡献光滑,非物理人造解。采用轨迹-CHEM CFD代码来解决的稳态,以二维可压缩RANS方程。验证了湍流模型是M输入的K-合作模式的基线版本。特别注意的是,以混合功能,其允许该模型的k CO和转化的K-S模式之间切换。结果表示为精度对笛卡尔结构网格,歪斜曲线结构网格,和非结构化三角网格家庭所观察到的顺序。所制造的解决方案清楚地识别上歪斜网格引起的扩散操作变得不一致(即,离散误差不与网格细化降低)的问题。对于扩散操作的替代制剂实现,并且所制造的解决方案被示出为收敛于一个二阶的方式与用于结构网格网格细化。在非结构化网格的初步调查表明,虽然该代码仍然是一致的,准确的观察到的顺序被减少到一阶。

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