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首页> 外文期刊>Mathematical Problems in Engineering >Higher-Order Spectral Analysis to Identify Quadratic Nonlinearities in Fluid-Structure Interaction
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Higher-Order Spectral Analysis to Identify Quadratic Nonlinearities in Fluid-Structure Interaction

机译:高阶谱分析法识别流固耦合中的二次非线性

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Hydrodynamic forces on a structure are the manifestation of fluid-structure interaction. Since this interaction is nonlinear, these forces consist of various frequencies: fundamental, harmonics, excitation, sum, and difference of these frequencies. To analyze this phenomenon, we performnumerical simulations of the flow past stationary and oscillating cylinders at low Reynolds numbers. We compute the pressure, integrate it over the surface, and obtain the lift and drag coefficients for the two configurations: stationary and transversely oscillating cylinders. Higher-order spectral analysis is performed to investigate the nonlinear interaction between the forces. We confirmed and investigated the quadratic coupling between the lift and drag coefficients and their phase relationship. We identify additional frequencies and their corresponding energy present in the flow field that appear as the manifestation of quadratic nonlinear interaction.
机译:结构上的流体动力是流固耦合的体现。由于这种相互作用是非线性的,因此这些力包括各种频率:这些频率的基波,谐波,激励,和和差。为了分析这种现象,我们对在低雷诺数下流过固定缸和振荡缸的流动进行了数值模拟。我们计算压力,将其积分到表面上,并获得两种配置的升力和阻力系数:固定和横向振荡缸。执行高阶谱分析以研究力之间的非线性相互作用。我们确认并研究了升力和阻力系数及其相位关系的二次耦合。我们确定流场中存在的附加频率及其对应的能量,这些能量以二次非线性相互作用的形式出现。

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