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Space-Time Mapping Analysis of Airfoil Nonlinear Interaction with Unsteady Inviscid Flow

机译:具有非定常无粘性流的翼型非线性相互作用的时空映射分析

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摘要

A new computational method of space-time mapping analysis is applied to nonlinear, inviscid computation of unsteady airfoil response to an upstream flow with a finite amplitude of a time-harmonic vortical perturbation. The unique feature of the method is that it solves the unsteady problem as a steady-state one, by treating the time coordinate identically to space directions. The periodic nature of the flow is used to design the mesh covering one period of the vortical gust in the time direction, with a periodic boundary condition applied at the time-inflow and time-outflow boundaries. The computed solution is, thus, driven directly to the final long-time periodic solution using a pseudotime marching with a high-order discretization scheme. Computed unsteady aerodynamic and aeroacoustic airfoil responses are compared against available numerical solutions. Results obtained for a highamplitude impinging gust identify zones in the computational domain where nonlinear response effects appear most significant.
机译:时空映射分析的一种新的计算方法被应用于非线性,不平稳计算的翼型对上游流动的非定常响应,时域涡旋扰动的振幅是有限的。该方法的独特之处在于,它通过将时间坐标等同于空间方向来解决作为稳态的非稳态问题。流动的周期性特性用于设计沿时间方向覆盖旋涡阵风一个周期的网格,并在时间流入和时间流出边界处应用周期性边界条件。因此,使用具有高阶离散化方案的伪时间行进将计算出的解直接驱动到最终的长时间周期解。将计算出的非稳态空气动力和空气声翼型响应与可用的数值解进行比较。高振幅撞击阵风获得的结果确定了计算域中非线性响应影响最明显的区域。

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