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Code verification and numerical error estimation for use in model validation of laminar, hypersonic double-cone flows

机译:用于层流模型验证的代码验证和数值误差估计,超声波双锥形流动

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This is the first of three related papers focused on verifying and validating a CFD model for hypersonic flows. In this paper we present verification evidence to support the accuracy of the code to simulate laminar, hypersonic double-cone flows. This is done first by developing and implementing several code verification tests to isolate several code features and assess convergence towards an exact solution. The second kind of evidence is based on numerical error estimation from validation cases using axisymmetric geometries and free stream conditions from experiments. Here we show that our code is able to compute surface heat flux and pressure with accuracy that is quantifiable and therefore can be included in validation comparisons. The second paper investigates whether the model can accurately simulate laminar hypersonic flow experiments of flows over double cones, conducted in CUBRC's LENS-I and LENS-XX wind-tunnels. The third paper pursues whether a mis-specification of the inflow boundary conditions may be responsible for the failure of the LENS-XX comparisons, using an inverse problem for the inflow, conditioned on measurements in the bulk flow and on the surface of the test article.
机译:这是第一个相关论文中的第一个专注于验证和验证用于超声波流量的CFD模型。在本文中,我们呈现验证证据以支持模拟层,高超声音双锥流的代码的准确性。这首先通过开发和实施多个代码验证测试来分离几个代码特征并评估精确解决方案的收敛。第二种证据基于使用轴对称几何形状的验证案例和实验的自由流条件的数值误差估计。在这里,我们表明我们的代码能够以可量化的精度计算表面热通量和压力,因此可以包含在验证比较中。第二篇论文研究了模型是否可以在古脆镜头 - I和镜头 - XX风隧道中进行双锥体的流动流动的流动性流动实验。第三篇论文追求流入边界条件的错误规范可能负责镜片-XX比较的失效,使用流入的逆问题,调节在散装流动和测试制品的表面上。

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