Large-Scale Simulation for Particle Damping

M. Saeki, Mika Bitoh
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引用次数: 1

Abstract

Particle damping is an effective method of passive vibration control. Although it has been widely used in various structural damping applications, there are some points to be examined. Few studies have focused on the difference in the effectiveness of particle dampers for systems with different natural frequencies. Also, a computational scheme for conducting large-scale simulations has not been established. The authors previously presented some computational methods for predicting large-scale particle damping. The calculations are performed using equivalent large particles instead of the original-size particles. However, the range of the radius of the equivalent large particles for which these methods are effective is still incompletely understood. The objective of this study is to experimentally examine the difference in the effectiveness of particle dampers for systems with different natural frequencies and to investigate the relationship between the radius of the equivalent large particles and the validity of the computational methods.
粒子阻尼的大尺度模拟
粒子阻尼是一种有效的被动振动控制方法。虽然它已广泛应用于各种结构阻尼应用,但仍有一些问题需要研究。很少有研究关注粒子阻尼器对不同固有频率系统的有效性差异。此外,还没有建立进行大规模模拟的计算方案。作者先前提出了一些预测大尺度粒子阻尼的计算方法。计算是使用等效的大颗粒而不是原始大小的颗粒进行的。然而,这些方法有效的等效大粒子的半径范围仍然不完全清楚。本研究的目的是通过实验检验不同固有频率系统中粒子阻尼器有效性的差异,并研究等效大粒子半径与计算方法有效性之间的关系。
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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