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Nonlinear vibration isolation for fluid-conveying pipes using quasi-zero stiffness characteristics

机译:准零刚度特性的输油管道非线性隔振

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Fluid-conveying pipes are always subjected to various excitations to cause unwanted vibrations. A quasi-zero stiffness system consisting of three linear springs is adopted as the nonlinear isolator to attenuate the transverse vibrations of fluid-conveying pipes induced by foundation excitations. A dynamic model of nonlinear forced vibration of the fluid-conveying pipe coupled with two nonlinear isolators is established for the nonlinear continuous system and validated by using two methods, Galerkin method and the finite difference method. The influence of the quasi-zero stiffness isolators on the vibration characteristics and vibration transmission of the pipe is investigated by analyzing the natural frequency, vibration mode, and nonlinear vibration response. The effects of flow speed of the fluid and the system parameters of the isolator are studied to evaluate the isolation performance. It is found that the quasi-zero stiffness isolator and fluid flow can shift several natural frequencies of vibration of the pipeline to the low-frequency region. When the linear stiffness of the vibration isolation is zero in the vertical direction, the first two modes of the bending vibration of the fluid-conveying pipe tend to become rigid mode. While achieving high-efficiency vibration isolation in the high-frequency region, the vibration in the low-frequency region is complicated. The flow speed of the fluid can deteriorate the performance of vibration isolation. (C) 2018 Elsevier Ltd. All rights reserved.
机译:流体输送管总是受到各种激励而引起不希望的振动。采用由三个线性弹簧组成的准零刚度系统作为非线性隔离器,以衰减地基激励引起的输液管的横向振动。针对非线性连续系统,建立了带有两个非线性隔离器的输液管道非线性强迫振动动力学模型,并通过Galerkin法和有限差分法两种方法对其进行了验证。通过分析固有频率,振动模式和非线性振动响应,研究了准零刚度隔离器对管道振动特性和振动传递的影响。研究了流体流速和隔离器系统参数的影响,以评估隔离性能。发现准零刚度隔离器和流体流动可以将管道振动的几个固有频率转移到低频区域。当隔振的线性刚度在竖直方向上为零时,流体输送管的弯曲振动的前两个模式趋于变为刚性模式。在实现高频区域中的高效振动隔离的同时,低频区域中的振动复杂。流体的流速可能会降低隔振性能。 (C)2018 Elsevier Ltd.保留所有权利。

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