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Dynamic Analysis and Parameter Optimization of Pipelines with Multidimensional Vibration Isolation and Mitigation Device

机译:具有多维振动隔离和缓解装置管道的动态分析与参数优化

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摘要

Pipelines are widely used as an economical transmission mode in petroleum transportation, ocean engineering, aerospace engineering, and nuclear industry. However, pipelines are potentially susceptible to vibration in horizontal and vertical directions under external excitation, which leads to a significant reduction in the service life of pipelines, or even the damage of pipelines. In this paper, a novel multidimensional vibration isolation and mitigation device (MVIMD) is proposed and optimized to mitigate the multidimensional vibration of pipelines. First, the dynamic characteristics and responses of pipelines with and without the devices are compared based on the modified equivalent standard solid model. Then the MVIMD is attached to a pipeline to verify its vibration mitigation effect in horizontal and vertical directions. Finally, the genetic algorithm (GA) is adopted to optimize the parameters of MVIMD. The numerical analysis results show that the novel MVIMD with parameters optimized by the genetic algorithm has better effects for controlling both horizontal and vertical vibration responses of pipelines.
机译:管道广泛用作石油运输,海洋工程,航空航天工程和核工业中经济的传输模式。然而,管道在外部激励下可能易于在水平和垂直方向上振动,这导致管道使用寿命的显着降低,甚至是管道的损坏。本文提出了一种新型多维振动隔离和缓解装置(MVIMD),并优化以减轻管道的多维振动。首先,基于改进的等效标准实体模型比较了具有和不具有设备的管道的动态特性和响应。然后将MVIMD连接到管道上,以验证其水平和垂直方向上的振动缓解效果。最后,采用遗传算法(GA)来优化MVIMD的参数。数值分析结果表明,具有遗传算法优化的参数的新型MVIMD具有更好的效果,用于控制管道的水平和垂直振动响应。

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