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Enhancement of an industrial finite-volume code for large-eddy-type simulation of incompressible high Reynolds number flow using near-wall modelling

机译:使用近壁建模对不可压缩的高雷诺数流的大涡型模拟进行工业有限体积代码增强

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摘要

We present a validation strategy for enhancement of an unstructured industrial finite-volume solver designed for steady RANS problems for large-eddy-type simulation with near-wall modelling of incompressible high Reynolds number flow. Different parts of the projection-based discretisation are investigated to ensure LES capability of the numerical method. Turbulence model parameters are calibrated by using a minimisation of least-squares functionals for first and second order statistics of the basic benchmark problems decaying homogeneous turbulence and turbulent channel flow. Then the method is applied to the flow over a backward facing step at Re_h = 37,500. Of special interest is the role of the spatial and temporal discretisation error for low order schemes. For wall-bounded flows, present results confirm existing best practice guidelines for mesh design. For free-shear layers, a sensor to quantify the resolution quality of the LES based on the resolved turbulent kinetic energy is presented and applied to the flow over a backward facing step at Re_h = 37,500.
机译:我们提出了一种验证策略,用于增强非结构化工业有限体积求解器的设计,该求解器针对不可压缩的高雷诺数流的近壁建模,用于大涡流型仿真的稳定RANS问题。研究了基于投影的离散化的不同部分,以确保数值方法的LES能力。通过使用最小二乘函数的最小化来校正湍流模型参数,这些最小二乘函数用于衰减均匀湍流和湍流通道的基本基准问题的一阶和二阶统计量。然后将该方法应用于Re_h = 37,500的向后步骤中的流。对于低阶方案,空间和时间离散误差的作用尤为重要。对于有边界的流动,当前结果证实了现有的网格设计最佳实践准则。对于自由剪切层,提出了一种传感器,用于基于解析的湍动能来量化LES的分辨率质量,并将其应用于Re_h = 37,500的后向台阶流中。

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