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Physical insight into the accuracy of finely-resolved iLES in turbulent boundary layers

机译:深入了解湍流边界层中精细解析的iLES的准确性

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摘要

This paper investigates the numerical accuracy of implicit Large Eddy Simulations (iLES) in relation to compressible turbulent boundary layers (TBL). iLES are conducted in conjunction with Monotonic Upstream-Centred Scheme for Conservation Laws (MUSCL) and Weighted Essentially Non-Oscillatory (WENO), ranging from 2nd to 9th-order. The accuracy effects are presented from a physical perspective showing skewness, flatness and anisotropy calculations, among others. The order of the scheme directly affects the physical representation of the TBL, especially the degree of asymmetry and anisotropy in the sub-layers of the TBL. The study concludes that high-order iLES can provide an accurate and detailed description of TBL directly comparable to available DNS and experimental results.
机译:本文研究了与可压缩湍流边界层(TBL)相关的隐式大涡模拟(iLES)的数值精度。 iLES与保护法的单调上游中心保护法(MUSCL)和加权基本非振荡(WENO)结合使用,范围从2阶到9阶。精度影响是从物理角度呈现的,该角度显示了偏度,平面度和各向异性计算等。方案的顺序直接影响TBL的物理表示形式,特别是TBL子层中的不对称度和各向异性程度。研究得出的结论是,高阶iLES可以直接与可用的DNS和实验结果相提并论,对TBL进行准确而详细的描述。

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