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Modeling of airfoil aeroelastic response to gust and rain coupled loads

机译:机翼对阵风和雨水耦合载荷的气动弹性响应建模

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The aeroelastic response of an airfoil featuring plunging-pitching coupled motion in an incompressible flow field to gust and rain coupled loads is primarily investigated in this paper. The equations of airfoil coupled motion are derived by the “typical section” approach and the aeroelastic model is achieved by coupling these to 2D unsteady aerodynamics models for incompressible potential flows. The modelings of the unsteady aerodynamic and gust loads are established by the use of the Wagner’s and the Küssner’s functions, respectively. The incorporation of the rain effect is implemented via substituting the values of the slope of lift curve in the rain conditions in the aeroelastic response equations. Numerical modelings of the aeroelastic response to gusts of different velocity distributions and comparisons with the solution obtained for the rigid and elastic models featuring plunging or pitching motion alone and plunging-pitching coupled motion are provided. The pertinent results agree well with the results from other literature. The influences of gust, rain and airfoil control parameters are specially presented and discussed in detail. These results seem new and should have important reference value to the optimization of aircraft structure for the industrial aviation community.
机译:本文主要研究翼型在不可压缩流场中的俯仰-俯仰耦合运动对气息和降雨耦合载荷的气动弹性响应。通过“典型截面”方法导出了机翼耦合运动方程,并通过将其耦合到二维非定常空气动力学模型来获得不可压缩的潜在流动,从而获得了气动弹性模型。通过使用瓦格纳函数和库斯纳函数分别建立了非定常空气动力学和阵风载荷的模型。通过将降雨条件下的升力曲线的斜率值代入气动弹性响应方程,可以实现降雨效应的合并。提供了对不同速度分布阵风的气动弹性响应的数值模型,并与以单独的俯冲或俯仰运动和俯仰-俯仰耦合运动为特征的刚性和弹性模型的解进行了比较。相关结果与其他文献的结果非常吻合。特别介绍并详细讨论了阵风,雨水和机翼控制参数的影响。这些结果似乎是新的,对于工业航空界的飞机结构优化应该具有重要的参考价值。

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