Development of Alternative Shielding Functions for Detached-Eddy Simulations

Development of Alternative Shielding Functions for Detached-Eddy Simulations
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分离涡模拟替代屏蔽函数的开发

DOI:
10.1007/978-3-030-27607-2_8
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发表时间:
2020
期刊:
Progress in Hybrid RANS-LES Modelling
影响因子:
--
通讯作者:
Ewald Krämer
Ewald Krämer
中科院分区:
--
文献类型:
--
作者:
Pascal Weihing;Johannes Letzgus;Thorsten Lutz;Ewald Krämer

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本文介绍了在延迟分离涡模拟(DDES)框架下寻找替代屏蔽函数的最新进展。阐述了标准屏蔽函数在平板湍流和轴对称逆压梯度流动中存在的缺陷。在这两种情况下,与边界层高度相比,较小的滤光片宽度会导致屏蔽功能的退化,并导致严重的模型应力损耗。为了克服标准屏蔽的强网格依赖性,提出了两种备选屏蔽函数。首先通过积分壁面法向涡度来确定边界层边缘,而通过对单个涡度分量的对比分析来识别分离流。对于第二个开关函数,通过计算伯努利方程的局域化公式来估计边界层边缘。屏蔽层在包含速度梯度算子的传感器的分解湍流内容下瓦解。在基本规范测试用例中验证了这种新型屏蔽。与DDES相比,可以证明附着层具有更好的保护作用。
This paper presents recent developments in finding alternative shielding functions in the framework of Delayed Detached-Eddy Simulation (DDES). The weaknesses of the standard shielding function are elaborated for the turbulent flow over a flat plate and an axisymmetric adverse pressure gradient flow. In both cases a small filter width compared to the boundary layer height caused a degeneration of the shielding function and led to severe model stress depletion. To overcome the strong grid dependency of the standard shielding two alternative shielding functions are proposed. The first determines the boundary layer edge by integrating the vorticity in the wall-normal direction, while separated flow is identified based on a comparative analysis of the individual vorticity components. For the second switching function the boundary layer edge is estimated by evaluating a localized formulation of the Bernoulli equation. The shielding disintegrates under resolved turbulent content by a sensor that includes the-velocity gradient operator. The novel shieldings are verified for basic canonical test cases. Compared to DDES, a superior protection of attached boundary layers could be demonstrated.
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