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Validation of SUPG Finite Element Simulations of Shockwave/Turbulent Boundary Layer Interactions in Hypersonic Flows

机译:超音速流中冲击波/湍流边界层相互作用的SUPG有限元模拟的验证

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This paper assesses the validity of a stabilized finite element formulation applied to shockwave/turbulent boundary layer interaction (SWTBLI) problems. Our focus is on comparison with two well-defined experimental data sets to evaluate the performance of the Spalart-AUmaras turbulence model. The streamline-upwind Petrov/Galerkin finite element formulation and the fully implicit numerical treatment of the turbulence model is first presented. We choose for validation two experiments which differ in the mechanism through which the SWTBLI is created. The first case is that of high Mach number flow over a compression ramp, and the second is an externally-generated Shockwave of varying strength impinging on a turbulent flat plate boundary layer. A particularly unique aspect of our numerical implementation is that it has been previously verified using the Method of Manufactured Solutions, hence we are confident that in this validation step that the selected mathematical models are implemented correctly. The combination of a verified numerical implementation, along with careful consideration of mesh and iterative convergence, allow us to critically assess validity of the underlying mathematical models.
机译:本文评估了应用于冲击波/湍流边界层相互作用(SWTBLI)问题的稳定有限元公式的有效性。我们的重点是与两个定义明确的实验数据集进行比较,以评估Spalart-AUmaras湍流模型的性能。首先提出了流线迎风的Petrov / Galerkin有限元公式和湍流模型的完全隐式数值处理。为了进行验证,我们选择了两个实验,两个实验的创建机制不同。第一种情况是在压缩斜面上流过高马赫数的情况,第二种情况是外部产生的冲击波,其强度不同,撞击在湍流的平板边界层上。我们的数值实现的一个特别独特的方面是,它先前已经使用制造解决方案方法进行了验证,因此我们相信,在此验证步骤中,可以正确实现所选的数学模型。经过验证的数值实现方式以及对网格和迭代收敛的仔细考虑相结合,使我们能够严格地评估基础数学模型的有效性。

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