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A beam with arbitrarily placed lateral dampers: Evolution of complex modes with damping

机译:具有任意放置的横向阻尼器的梁:随着阻尼的复杂模式的演变

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摘要

Free vibration of a beam with multiple arbitrarily placed lateral viscous dampers is investigated to gain insight into the intrinsic dynamic features of non-proportional damped systems. In terms of virtual boundary condition method, complex modes of a damper-beam system are achieved, and the solution is also suitable for the beams that have different boundary conditions. The features of the wave numbers satisfying the frequency equation were discussed in theory. The orthogonality analysis conducted in this paper provides two orthogonality conditions for complex modes. Pseudoundamped natural frequencies, damping ratios and complex modes are surveyed via numerical study. The analysis on the evolution of complex modes shows that the increasing damping would lead to over damped modes, and the mode shape that corresponds to the small one of a pair of real-valued natural frequencies is close to the static deformation shape of a beam subjected to static forces located at the positions of the dampers. For the rest modes that would never be over damped with increasing damping, the mode shapes and corresponding psuedoundamped natural frequencies will converge to that of a beam with rolling supports located at where dampers are placed. The exact solution of free vibration of a multiple-span beam is presented in addition.
机译:研究了具有多个任意放置的横向粘液阻尼器的梁的自由振动,深入了解非比例阻尼系统的内在动态特征。在虚拟边界条件方法方面,实现了阻尼梁系统的复杂模式,并且解决方案也适用于具有不同边界条件的光束。理论上讨论了满足频率方程的波号的特征。本文中进行的正交性分析为复杂模式提供了两个正交性条件。通过数值研究调查假衰弱的自然频率,阻尼比率和复杂模式。复杂模式的演变的分析表明,增加的阻尼会导致抑制模式,与一对实值的自然频率中的小的一个相对应的模式形状接近受到梁的静态变形形状静态力位于阻尼器的位置。对于从不到的阻尼的静止模式,随着增加的阻尼,模式形状和相应的PSUIDeDamped自然频率将收敛到具有位于放置阻尼器的滚动支撑件的光束的模型。另外,还提出了多个跨度光束的自由振动的精确溶液。

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