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Vibration mitigation of a pipe conveying fluid with a passive geometrically nonlinear absorber: a tuning optimal design

机译:具有被动几何非线性吸收器的管道输送流体的减振:调整最佳设计

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The objective of the presented article is to investigate the nonlinear dynamics and vibration of a simply supported fluid conveying pipe coupled with a geometrically nonlinear absorber, as well as the occurrence of the targeted energy transfer phenomena in the system. In addition, given the sensitivity of passive nonlinear absorbers performance to uncertainties in design (e.g., damping coefficient) and aleatory parameters such as the initial excitation of the primary system, the optimal design of the absorber in presence of uncertainties is also examined in this paper. The absorber consists of two linear springs, a lightweight mass, and one linear damping configured in a particular formation and is coupled to the pipe in grounded and ungrounded configurations. It was indicated that the absorber can perform as a tuned mass damper (TMD), nonlinear energy sink (NES), or a modified NES based on the bifurcation parameter value, and finding the optimal type of the absorber is left to the optimization solver without any preceding knowledge of the physics of the system. It is illustrated that the stability of the pipe and the absorber effectiveness is reduced by increasing the inside flow velocity. Moreover, the efficiency of the absorber slightly dependents on the density of the inside fluid. The results show that the stochastic optimally designed absorber can nonlinearly resonate with the pipe over extensive frequency ranges which leads to a synchronized motion of the pipe and absorber. In this situation a significant irreversible energy pumping from the pipe to the absorber may occur that make the motion localizes to the absorber and reduce the amplitude of the pipe for a wide range of initial excitation and fluid velocity. Also, comparing the present work to other similar works yields a great result. (C) 2020 Elsevier B.V. All rights reserved.
机译:本文的目的是研究与几何非线性吸收器联接的简单支持的流体输送管的非线性动力学和振动,以及系统中的目标能量转移现象的发生。此外,鉴于被动非线性吸收剂性能对设计(例如,阻尼系数)和梯级参数的不确定性的敏感性,例如初始系统的初始激励,在本文中还研究了在存在不确定性存在下的吸收器的最佳设计。吸收器由两个线性弹簧,轻质质量和配置在特定地层中的一个线性阻尼组成,并且以接地和未接地的配置连接到管道。结果表明,吸收器可以作为调谐质量阻尼器(TMD),非线性能量水槽(NES)或改进的NES基于分叉参数值,并将吸收器的最佳类型留给优化求解器而没有任何先前的系统物理知识。示出了通过增加内部流速降低了管道和吸收器效果的稳定性。此外,吸收器的效率略微基于内部流体的密度。结果表明,随机最佳设计的吸收体可以在频率范围内与管道非线性地谐振,这导致管道和吸收器的同步运动。在这种情况下,可以发生从管道到吸收器的显着不可逆能量,这使得运动使得运动定位到吸收器并降低管道的幅度,以用于广泛的初始激发和流体速度。此外,将目前的工作与其他类似作品的比较产生了很大的结果。 (c)2020 Elsevier B.v.保留所有权利。

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