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Implementation of Flow Tripping Capability in the USM3D Unstructured Flow Solver

机译:USM3D非结构化流量求解器中流量跳闸功能的实现

摘要

A flow tripping capability is added to an established NASA tetrahedral unstructured parallel Navier-Stokes flow solver, USM3D. The capability is based on prescribing an appropriate profile of turbulence model variables to energize the boundary layer in a plane normal to a specified trip region on the body surface. We demonstrate this approach using the k-epsilon two-equation turbulence model of USM3D. Modification to the solution procedure primarily consists of developing a data structure to identify all unstructured tetrahedral grid cells located in the plane normal to a specified surface trip region and computing a function based on the mean flow solution to specify the modified profile of the turbulence model variables. We leverage this data structure and also show an adjunct approach that is based on enforcing a laminar flow condition on the otherwise fully turbulent flow solution in user-specified region. The latter approach is applied for the solutions obtained using other one-and two-equation turbulence models of USM3D. A key ingredient of the present capability is the use of a graphical user-interface tool PREDISC to define a trip region on the body surface in an existing grid. Verification of the present modifications is demonstrated on three cases, namely, a flat plate, the RAE2822 airfoil, and the DLR F6 wing-fuselage configuration.
机译:流跳功能已添加到已建立的NASA四面体非结构化并行Navier-Stokes流量求解器USM3D中。该能力基于规定湍流模型变量的适当分布,以激发与体表上指定行程区域垂直的平面中的边界层。我们使用USM3D的Kε两方程湍流模型演示了这种方法。对求解程序的修改主要包括开发一个数据结构以识别位于垂直于指定表面行程区域的平面内的所有非结构化四面体网格单元,并基于平均流解计算一个函数以指定湍流模型变量的修改轮廓。我们利用此数据结构,并展示了一种辅助方法,该方法基于在用户指定区域中否则完全湍流的解决方案上强制层流条件。后一种方法适用于使用USM3D的其他一方程和二方程湍流模型获得的解。当前功能的关键要素是使用图形用户界面工具PREDISC在现有网格中的身体表面上定义行程区域。在三种情况下,即平板,RAE2822机翼和DLR F6机翼机身配置,可以证明对本发明的修改。

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