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CFD Validation for High-Lift Devices: Three-Element Airfoil

机译:高升降机设备的CFD验证:三元翼型

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In this study, the accuracy of structured and unstructured mesh CFD codes in simulating the flow around a three-element high-lift configuration (slat, main wing, and flap) is assessed, and mesh dependency and effect of turbulence models are studied. In the first part of the study, the results of two structured mesh CFD codes and an unstructured mesh CFD code using the same turbulence model are compared and discussed. A mesh refinement approach is also used to examine the dependency of numerical accuracy on the density of unstructured meshes. By properly distributing mesh points in an unstructured mesh, the detail in flow physics is obtained. It is also shown that the quantitative prediction of the vortex in the slat cove is an important factor that affects accuracy. In the second part of the study, three turbulence models are compared using one of the structured mesh CFD codes. All turbulence models can produce similar flowfields. However, several differences are seen in the separated regions, especially in the slat cove. Commonly used turbulence models, Spalart-Allmaras model and Menter's SST model, produce similar aerodynamic forces at lower angles of attack. At higher angles of attack, the SST model gives better results for the present computations. It is found that the maximum lift and the angle at which the stall occurs are very sensitive to the turbulence model.
机译:在这项研究中,评估了结构化和非结构化网格CFD代码在模拟三元素高升力配置(板条,主翼和襟翼)周围流动时的准确性,并研究了网格依赖性和湍流模型的影响。在研究的第一部分中,比较和讨论了使用相同湍流模型的两个结构化网格CFD代码和一个非结构化网格CFD代码的结果。网格细化方法还用于检查数值精度对非结构化网格密度的依赖性。通过在非结构化网格中适当分布网格点,可以获得流物理学的细节。还表明,板条湾中涡旋的定量预测是影响精度的重要因素。在研究的第二部分中,使用结构化网格CFD代码之一比较了三个湍流模型。所有湍流模型都可以产生相似的流场。但是,在分开的区域,特别是在板条湾中,可以看到一些差异。常用的湍流模型,Spalart-Allmaras模型和Menter的SST模型在较小的迎角下会产生相似的空气动力。在更高的攻角下,SST模型可为当前计算提供更好的结果。发现最大升力和失速发生的角度对湍流模型非常敏感。

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