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Comparison of the full potential and Euler formulations for computing transonic airfoil flows

机译:计算跨音速翼型流量的全势和欧拉公式的比较

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摘要

A quantitative comparison between the Euler and full potential formulations with respect to speed and accuracy is presented. The robustness of the codes used is tested by a number of transonic airfoil cases. The computed results are from four transonic airfoil computer codes. The full potential codes use fully implicit iteration algorithms. The first Euler code uses a fully implicit ADI iteration scheme. The second Euler code uses an explicit Runge Kutta time stepping algorithm which is enhanced by a multigrid convergence acceleration scheme. Quantitative comparisons are made using various plots of lift coefficient versus the average mesh spacing along the airfoil. Besides yielding an asymptotic limit to the lift coefficient, these results also demonstrate the truncation error behavior of the various codes. Quantitative conclusions regarding the full potential and Euler formulations with respect to accuracy, speed, and robustness can be presented.
机译:提出了在速度和准确性方面欧拉方程式和全部潜在方程式之间的定量比较。所使用代码的鲁棒性已通过许多跨音速翼型箱进行了测试。计算结果来自四个跨音速翼型计算机代码。全部潜在代码使用完全隐式迭代算法。第一个Euler代码使用完全隐式的ADI迭代方案。第二个Euler代码使用显式的Runge Kutta时间步长算法,该算法通过多网格收敛加速方案进行了增强。使用升力系数相对于沿机翼的平均网格间距的各种图进行定量比较。这些结果除了产生升力系数的渐近极限外,还证明了各种代码的截断误差行为。可以给出关于准确度,速度和鲁棒性的全部潜力和欧拉公式的定量结论。

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