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The dynamics of two-dimensional cantilevered plates with an additional spring support in axial flow

机译:带有轴向附加弹簧支撑的二维悬臂板的动力学

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摘要

In this paper, the dynamics of two-dimensional cantilevered flexible plates in axial flow is investigated using a fluid-structure interaction model. An additional spring support of either linear or cubic type is installed at various locations on the plate; its presence qualitatively affects the dynamics of the fluid-structure system. Without the spring, the cantilevered plate loses stability by flutter when the flow velocity exceeds a critical value; as the flow velocity increases further, the system dynamics is qualitatively the same: the plate undergoes symmetric limit cycle oscillations with increasing amplitude. With a linear spring, a state of static buckling is added to the dynamics. Rich nonlinear dynamics can be observed when a cubic spring is considered; the plate may be stable and buckled, and it may undergo either symmetric or asymmetric limit cycle oscillations. Moreover, when the flow velocity is sufficiently high, the plate may exhibit chaotic motions via a period-doubling route.
机译:本文利用流固耦合模型研究了二维悬臂柔性板在轴向流动的动力学特性。附加的线性或立方型弹簧支架安装在板上的不同位置;它的存在会定性地影响流体结构系统的动力学。如果没有弹簧,则当流速超过临界值时,悬臂板会因颤动而失去稳定性。随着流速的进一步增加,系统动力学在质量上是相同的:平板经历幅度增大的对称极限循环振荡。对于线性弹簧,静态屈曲状态会添加到动力学中。当考虑立方弹簧时,可以观察到丰富的非线性动力学。板可能稳定且弯曲,并且可能经历对称或不对称的极限循环振荡。此外,当流速足够高时,平板可能会通过倍增路径表现出混沌运动。

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