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Numerical Investigation of Supersonic Plate Flutter Using the Exact Aerodynamic Theory

机译:基于精确空气动力学理论的超声速板颤振数值研究

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摘要

In classical investigations of panel flutter it is usually assumed that the gas pressure acting on the plate can be calculated within the framework of the piston theory, an approximation exact for high Mach numbers. The loss of stability revealed in these investigations is of the "coupled" type, involving the interaction of two oscillation modes. Recently, the use of asymptotic methods revealed another single-mode type of stability loss, which cannot be obtained within the framework of the piston theory. In the present study this type of stability loss is investigated numerically using the Bubnov-Galerkin method.
机译:在面板颤振的经典研究中,通常假设作用在板上的气压可以在活塞理论的框架内计算得出,这是高马赫数的近似精确值。在这些研究中揭示的稳定性损失是“耦合”类型的,涉及两种振荡模式的相互作用。最近,使用渐近方法揭示了另一种单模类型的稳定性损失,这在活塞理论的框架内无法获得。在本研究中,使用Bubnov-Galerkin方法对这种类型的稳定性损失进行了数值研究。

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