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Assessment of hybrid RANS/LES models for the flow prediction of a supersonic ramp-cavity

机译:用于超声波坡腔的流动预测的混合RAN模型的评估

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Numerical flow simulations of a supersonic reattaching shear layer over a ramp-cavity are conducted using RANS and two hybrid RANS/LES turbulence models. The hybrid models are based on the detached eddy simulation (DES) framework, the SST-IDDES model and a new proposed model called the TNT-IsDDES model. The effects of various numerical aspects and model parameters are investigated. Advanced sub-grid length scales, known as the shear layer adapted(SLA) length and the least square (LSQ) length, are examined and compared to the traditional cubic root sub-grid length scale. An unequivocal advantage of these advanced sub-grid length scales is demonstrated. Overall, the results show that hybrid RANS/LES models, compared to conventional RANS turbulence models, significantly improve flow predictions. (C) 2021 Elsevier Masson SAS. All rights reserved.
机译:使用RANS和两个杂交RAN湍流模型进行斜面腔在斜面上的超音速重新连接剪切层的数值流模拟。 混合模型基于分离的涡模拟(DES)框架,SST-IDDES模型和称为TNT-ISDDES模型的新提出模型。 研究了各种数值方面和模型参数的影响。 先进的子网格长度,被称为适应的剪切层(SLA)长度和最小二乘长度(LSQ)长度,并与传统的立方根子网格长度尺度进行比较。 证明了这些先进的子网格长度尺度的明确优点。 总体而言,结果表明,与传统的RAN湍流模型相比,混合rans / les模型,显着提高了流量预测。 (c)2021 Elsevier Masson SAS。 版权所有。

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