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Time domain numerical calculations of unsteady vortical flows about a flat plate airfoil

机译:平板翼型非定常涡流的时域数值计算

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摘要

A time domain numerical scheme is developed to solve for the unsteady flow about a flat plate airfoil due to imposed upstream, small amplitude, transverse velocity perturbations. The governing equation for the resulting unsteady potential is a homogeneous, constant coefficient, convective wave equation. Accurate solution of the problem requires the development of approximate boundary conditions which correctly model the physics of the unsteady flow in the far field. A uniformly valid far field boundary condition is developed, and numerical results are presented using this condition. The stability of the scheme is discussed, and the stability restriction for the scheme is established as a function of the Mach number. Finally, comparisons are made with the frequency domain calculation by Scott and Atassi, and the relative strengths and weaknesses of each approach are assessed.
机译:开发了一种时域数值方案,以解决由于施加上游,小振幅,横向速度扰动而引起的围绕平板翼型的非恒定流。产生的非稳态势的控制方程是均匀,恒定系数的对流波方程。要精确解决问题,就需要开发近似边界条件,以正确模拟远场中非恒定流的物理现象。建立了统一有效的远场边界条件,并利用该条件给出了数值结果。讨论了该方案的稳定性,并根据马赫数确定了该方案的稳定性限制。最后,与Scott和Atassi进行的频域计算进行了比较,并评估了每种方法的相对优势和劣势。

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