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The interaction of a Sears-type sinusoidal gust with a cambered aerofoil in the presence of non-uniform streamwise flow

机译:在气流不均匀的情况下,Sears型正弦阵风与弧形翼型的相互作用

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摘要

The unsteady load response of an aerofoil encountering a gust is often modelled using analytical transfer functions, which assume idealised behaviour of both the flow and the aerofoil. One such transfer function is the Sears function, which models a pure transverse gust interacting with a flat-plate aerofoil at zero mean incidence. The function was extended by Goldstein and Atassi to account for camber and incidence as well as the presence of a streamwise gust component. Atassi showed that the effects of camber and incidence (i.e. non-zero mean aerofoil loading) are not negligible when there is a streamwise gust component. In this work, new experimental data is shown for an aerofoil with non-zero loading encountering a gust with both streamwise and transverse components. The data gives validation of the Atassi model. Some of the flow physics behind the Atassi model is also investigated, including the superposition of the gust onto the aerofoil potential field and the propagation of the gust along the aerofoil surface.
机译:通常使用解析传递函数对遇到阵风的机翼的非稳态载荷响应进行建模,该分析传递函数假定流动和机翼都具有理想的行为。一个这样的传递函数是Sears函数,该函数对纯横向阵风与零平均入射角的平板翼型相互作用进行建模。 Goldstein和Atassi扩展了该功能,以解决外倾角和发生率以及溪流阵风分量的存在。 Atassi表明,当存在阵风阵风分量时,弯度和入射角(即非零平均翼型载荷)的影响不可忽略。在这项工作中,显示了具有非零载荷的翼型遇到阵风时在流向和横向两个分量上都有新的实验数据。数据验证了Atassi模型的有效性。还研究了Atassi模型背后的一些流动物理学,包括阵风在翼型势场上的叠加以及阵风沿翼型表面的传播。

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