A Resonating Lattice TMD to Reduce Pipeline Vibrations

Mahesh Murugan Jaya, R. Ceravolo, E. Matta, L. Z. Fragonara
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引用次数: 2

Abstract

There are numerous ways to realize vibration absorbers. In this study, a new method is proposed wherein an elastomeric lattice is used. The geometrical configuration of the lattice is designed such that it transfers energy from the main system and is dissipated by the inherent material damping of the lattice material. The applicability of this system is numerically evaluated for pipelines by using two simple lattices whose geometries were optimized and the performances under harmonic loads compared with that of the theoretical optimal TMD. Eventhough they were capable of reducing the vibrations significantly, it was found to be less efficient at small mass ratios while at large mass ratios, the lattices performed similar to the theoretical optimal TMD. Nevertheless, in order to use such systems for pipelines or pipeline like structures such as chimneys, further studies are required using improved lattice configurations that can work efficiently for the whole range of mass ratios.
一种减少管道振动的共振点阵TMD
实现减振器的方法有很多种。在这项研究中,提出了一种使用弹性晶格的新方法。晶格的几何结构被设计成这样,它从主系统传递能量,并被晶格材料的固有材料阻尼耗散。通过对两个简单格点的几何形状进行优化,并与理论最优TMD进行了谐波载荷下的性能比较,对该系统在管道中的适用性进行了数值评价。尽管它们能够显著降低振动,但在小质量比下效率较低,而在大质量比下,晶格的性能与理论最佳TMD相似。然而,为了将这种系统用于管道或类似管道的结构,如烟囱,需要进一步的研究,使用改进的晶格结构,可以在整个质量比范围内有效地工作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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