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Experimental studies on the effectiveness and robustness of a pounding tuned mass damper for vibration suppression of a submerged cylindrical pipe

机译:锤击式调谐质量阻尼器抑制水下圆柱管振动的有效性和鲁棒性的实验研究

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摘要

Pounding tuned mass damper (PTMD) is a novel type of passive damper. The PTMD utilizes collisions or impacts of a tuned mass with viscoelastic materials to efficiently dissipate the vibration energy of primary structures. The previous studies have verified its effective damping performance on a full-scale subsea jumper and other structures in air. This paper presents the first-ever experimental verification of a submerged PTMD system for vibration control of pipelike structures underwater. To facilitate the experimental studies, a vertical vibration system consisting of 4 springs and a cylindrical steel pipe was designed and set up in a water tank. Furthermore, a numerical method considering the effect of the added mass is described to estimate the natural frequencies of a submerged cylindrical pipe. Therefore, experimental results demonstrate that the PTMD system is effective and efficient to suppress the forced vibrations of the submerged cylindrical pipe at the tuned frequency and is also robust over a range of detuning frequencies.
机译:磅调谐质量阻尼器(PTMD)是一种新型的被动阻尼器。 PTMD利用调谐质量与粘弹性材料的碰撞或冲击来有效地消散主结构的振动能量。先前的研究已经验证了其在大型海底跳线和空气中其他结构上的有效阻尼性能。本文介绍了用于水下水下管道结构振动控制的浸没式PTMD系统的首次实验验证。为了便于实验研究,设计了一个由4个弹簧和一个圆柱形钢管组成的垂直振动系统,并将其安装在水箱中。此外,描述了一种考虑增加质量的影响的数值方法,以估计水下圆柱管的固有频率。因此,实验结果表明,PTMD系统可以有效地抑制浸入式圆柱管在调谐频率下的强迫振动,并且在一定范围的失谐频率下也具有鲁棒性。

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