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Simultaneous simulation of transition and massive separation by RANS-LES-Tr model

机译:Rans-LES-TR模型同时模拟过渡和大规模分离

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To predict complex flow, including transition on the windward side and massive separation on the leeward side, a Reynolds averaged Navier Stokes-Large Eddy Simulation (RANS-LES) hybrid model based on the three-equation k-omega-gamma transition model (RANS-LES-Tr) was developed. Then, it was applied to simulate the following three cases, such as the low-speed flow past a cylinder only with the first transition mode, the low-speed prolate spheroid flow at a high angle of attack (AoA) with both the first and crossflow modes; and hypersonic flow past the "Orion" capsule with the first, second and crossflow modes. RANS-LES-Tr shows much better agreements with available measurements, such as skin friction and heat flux on the windward side, than RANS-LES based on the full turbulence model. (C) 2020 Elsevier Masson SAS. All rights reserved.
机译:为了预测复杂的流量,包括在迎风侧的过渡和背风侧的大规模分离,基于三方程K-Omega-Gamma转换模型(RANS -LES-TR)是开发的。然后,它被应用于模拟以下三种情况,例如仅利用第一转变模式的低速流过汽缸,低速扩散球体流动以高角度(AOA)与第一和横流模式;和过度流过第一,第二和横流模式的“猎户座”胶囊。 Rans-LES-TR与可用测量的达成更好的达成协议,例如迎风侧的皮肤摩擦和热通量,而不是基于完全湍流模型的Rans-LES。 (c)2020 Elsevier Masson SAS。版权所有。

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