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A Transition-Sensitive Hybrid RANS/LES Modeling Methodology for CFD Applications

机译:适用于CFD应用的过渡敏感型混合RANS / LES建模方法

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In recent years, the use of Hybrid RANS/LES (HRL) models has become more common in CFD simulations, since HRL models include characteristics of both RANS and LES models to offer more accuracy than RANS in regions of flow separation at a reduced cost relative to LES in attached boundary layers. Although HRL models are widely used in turbulent flow simulations, they have limitations for transitional flow predictions. Most of the HRL models include a fully turbulent RANS model component for boundary layer regions. The small number of HRL models that include transition-sensitive RANS models have issues related to the RANS model itself and to the zonal transition between RANS and LES. In order to address those issues, a new transition-sensitive HRL modeling methodology has been developed that includes a dynamic HRL (DHRL) methodology and a physics-based transition-sensitive RANS model. The feasibility of the transition-sensitive dynamic HRL (TDHRL) model has been investigated by performing numerical simulations of the flow over a PAK-B airfoil at different Reynolds numbers and FSTI conditions. Transient simulations using the Delayed Detached Eddy Simulation (DDES) model and the TDHRL model are performed at Re = 25,000 and Re = 100,000 for low FSTI and Re = 100,000 for high FSTI conditions. Comparison with experimental measurements and DDES model computational results illustrates the potential of TDHRL model for accurately capturing the physics of complex transitional flow phenomena.
机译:近年来,在CFD模拟中使用混合RANS / LES(HRL)模型已变得更加普遍,因为HRL模型同时包含RANS和LES模型的特征,从而在降低流量成本的同时,在流分离区域提供了比RANS更高的精度。附加边界层中的LES。尽管HRL模型已广泛用于湍流模拟中,但它们对过渡流动预测具有局限性。大多数HRL模型都包括用于边界层区域的完全湍流的RANS模型组件。包括过渡敏感型RANS模型在内的少数HRL模型存在与RANS模型本身以及RANS与LES之间的区域过渡有关的问题。为了解决这些问题,已经开发了一种新的对过渡敏感的HRL建模方法,其中包括动态HRL(DHRL)方法和基于物理的对过渡敏感的RANS模型。通过对不同雷诺数和FSTI条件下PAK-B机翼上的流动进行数值模拟,研究了过渡敏感型动态HRL(TDHRL)模型的可行性。使用低延迟涡流仿真(DDES)模型和TDHRL模型的瞬态仿真是在Re = 25,000和Re = 100,000(对于低FSTI)和Re = 100,000(对于高FSTI条件)下进行的。与实验测量结果和DDES模型计算结果的比较说明了TDHRL模型在准确捕获复杂过渡流现象的物理特征方面的潜力。

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