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Enhanced delayed DES of shock wave/boundary layer interaction in a planar transonic nozzle

机译:平面跨音速喷嘴中增强延迟的冲击波/边界层相互作用

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摘要

An enhanced delayed detached eddy simulation of a shock wave/boundary layer interaction in an over-expanded planar transonic nozzle has been carried out to predict the fundamental features of shock low-frequency unsteadiness. The modification of the sub-grid length-scale proposed in Shur et al. (2015) has been implemented to attenuate some well-known problems of detached eddy simulation: the modeled-stress depletion in the switch region between RANS and LES and the consequent delay of transition to turbulence at the onset of separation. The comparison of the computational results with the experimental data shows that the enhanced DDES leads to significant improvements in the estimation of some flow features with respect to a different DDES version, even though some discrepancies are still observable in the distribution of the mean wall pressure, and additional work is needed to further improve the transition from modeled to resolved turbulence.
机译:已经进行了增强的延迟分离涡流模拟过膨胀的平面跨音喷嘴中的冲击波/边界层相互作用以预测冲击低频不稳定性的基本特征。 Shur等人提出的子网格长度级的修改。 (2015年)已实施以衰减分离涡流模拟的一些众所周知的问题:Rans和Les之间的开关区域中的模型应力耗尽以及在分离开始时的过渡到湍流的延迟。使用实验数据的计算结果的比较表明,增强DDES在相对于不同DDES版本的一些流特征估计的显着改进,即使在平均壁压的分布中仍然可观察到一些差异,需要进行额外的工作来进一步改善从建模到解决湍流的转变。

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