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Exact linear far-field conditions for three-dimensional aerodynamic stationary transonic flows

机译:三维空气动力学平稳跨音速流的精确线性远场条件

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摘要

We consider the problem of imposing artificial boundary conditions on the external boundary of a computational domain for stationary aerodynamic transonic flow simulation. The proposed construction of nonlocal boundary conditions is based on the assumption that outside a computational domain the flow is governed by the Euler equations linearized about the free-stream subsonic uniform background; this model can treat flows with wakes admitting nonzero vorticity and nonconstant entropy at the outflow. We use potential theory in order to find the desired conditions which are nonlocal and exact with respect to the considered model. The nonlocal operator modelling the boundary conditions requires only the evaluation of two surface integrals throughout the artificial boundary. We discuss briefly some questions of the numerical implementation of the proposed conditions in the form of relaxation methods for finding the solution to a flow problem and estimate the required computational costs. Finally, we give some numerical results by testing the obtained computational formulae.
机译:我们考虑在固定的气动跨音速流模拟的计算域的外部边界上施加人工边界条件的问题。拟议的非局部边界条件的构造是基于以下假设:在计算域之外,流动由围绕自由流亚音速均匀背景线性化的Euler方程控制;该模型可以处理带有允许在流出处具有非零涡度和非恒定熵的尾流。我们使用势能理论来找到所需的条件,这些条件相对于所考虑的模型而言是非局部且精确的。建模边界条件的非局部算子仅需要评估整个人工边界中的两个表面积分。我们以松弛方法的形式简要讨论了所提出条件的数值实现的一些问题,这些松弛方法用于寻找流动问题的解决方案并估算所需的计算成本。最后,我们通过测试获得的计算公式给出一些数值结果。

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