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首页> 外文期刊>Computational mathematics and mathematical physics >Maximization of the lift/drag ratio of airfoils with a turbulent boundary layer: Sharp estimates, approximation, and numerical solutions
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Maximization of the lift/drag ratio of airfoils with a turbulent boundary layer: Sharp estimates, approximation, and numerical solutions

机译:带有湍流边界层的机翼的升力/阻力比的最大化:精确的估计,近似和数值解

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摘要

The lift/drag ratio of an airfoil placed in an incompressible attached flow is maximized taking into account the viscosity in the boundary-layer approximation. An exact solution is constructed. The situation when the resulting solutions are not in the admissible class of univalent flows is discussed. A procedure is proposed for determining physically feasible airfoils (with a univalent flow region) with a high lift/drag ratio. For this purpose, a class of airfoils is constructed that are determined by a twoparameter function approximating the found exact solution to the variational problem. For this class, the ranges of free parameters leading to physically feasible flows are found. The results are verified by computing a turbulent boundary layer using Eppler's method, and airfoils with a high lift/drag ratio in an attached flow are detected.
机译:考虑到边界层近似中的粘度,放置在不可压缩的附着流中的翼型的升力/阻力比最大。构建一个精确的解决方案。讨论了所得解决方案不在单价流的允许类中的情况。提出了一种用于确定具有高升/降比的物理上可行的机翼(具有单价流动区域)的程序。为此目的,构造了一类翼型,该翼型由双参数函数确定,该函数对找到的变分问题的精确解进行近似。对于此类,找到了导致物理上可行的流动的自由参数范围。通过使用Eppler方法计算湍流边界层来验证结果,并检测到附着流中具有高升/降比的机翼。

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