Analysis of proportional damping or Rayleigh damping on damped and undamped systems

M. A. Saeed
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引用次数: 1

Abstract

Damping mechanisms have been active areas of research for a long time in history, despite this its understanding is still rudimentary as compared to the other traits of modeling. The actual problem is that even now it is not clear, which state variables are relevant for the computation of damping forces, which makes it very difficult to model in Finite Element Method. To remedy this, a well-known method is used, called ‘Proportional damping’ (Rayleigh damping) and used for the modeling of viscous damping, initially established for undamped systems, but can be used for the analysis of damped systems as well. Proportional damping is used to model the energy dissipation characteristics of complex engineering structures as well as solve multiple dynamic problems. It plays very important role in modeling damping on an industrial scale. So, Rayleigh damping is proved to be an effective way of considering damping for structure's analysis. To completely analyze the proportional damping, damping parameters are attained for two multiple degrees of freedom systems and Rayleigh damping parameters will be extracted for attained damping values during the research to demonstrate the theoretical approach of Proportional damping. The aim of this paper is to analyze Rayleigh damping or Proportional damping and have an overview of its effects and its importance in structures, along with explaining its advantages and disadvantages.
阻尼和无阻尼系统的比例阻尼或瑞利阻尼分析
阻尼机制在历史上一直是活跃的研究领域,尽管如此,与建模的其他特征相比,它的理解仍然是初级的。实际问题是,即使到目前为止,还不清楚哪些状态变量与阻尼力的计算有关,这使得在有限元方法中建模非常困难。为了解决这个问题,使用了一种众所周知的方法,称为“比例阻尼”(瑞利阻尼),并用于粘性阻尼的建模,最初是为无阻尼系统建立的,但也可用于阻尼系统的分析。比例阻尼用于模拟复杂工程结构的耗能特性,解决多种动力问题。它在工业规模的阻尼建模中起着非常重要的作用。因此,瑞利阻尼是结构分析中考虑阻尼的一种有效方法。为了完整地分析比例阻尼,我们对两个多自由度系统进行了阻尼参数的获取,并在研究过程中对获得的阻尼值提取瑞利阻尼参数,以展示比例阻尼的理论方法。本文的目的是分析瑞利阻尼或比例阻尼,概述其在结构中的作用和重要性,并解释其优点和缺点。
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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