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A STUDY OF ERRORS INDUCED BY DECOUPLING APPROXIMATION IN DAMPED LINEAR VIBRATORY SYSTEMS

机译:阻尼线性振动系统解耦逼近引起的误差的研究

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摘要

It is well known that an undamped linear vibratory system can be decoupled through transformation to principal coordinates. In the presence of damping, coordinate decoupling occurs only if the system is classically damped. Upon modal transformation, the system generally remains coupled by the off-diagonal elements of its modal damping matrix. A common approximation in the analysis of nonclassically damped systems is to ignore the off-diagonal elements of the modal damping matrix, which is equivalent to neglecting coupling of the principal coordinates. This procedure is termed the decoupling approximation. Intuitively, the errors of decoupling approximation should be small if the off-diagonal elements of the modal damping matrix are small. Contrary to this widely accepted belief, an example is provided to demonstrate that this criterion is not sufficient for decoupling approximation. In fact, coupling effect can even increase as the off-diagonal elements of the modal damping matrix decrease in magnitude. Discussion and explanation are provided as to why the errors increase when the modal damping matrix becomes increasingly diagonal.
机译:众所周知,无阻尼线性振动系统可以通过转换为主坐标来解耦。在存在阻尼的情况下,仅当系统经过经典阻尼时才发生坐标解耦。进行模态转换后,系统通常保持其模态阻尼矩阵的非对角线元素耦合。在分析非经典阻尼系统时,通常的近似方法是忽略模态阻尼矩阵的非对角线元素,这等效于忽略主坐标的耦合。该过程称为解耦近似。直观上,如果模态阻尼矩阵的非对角线元素较小,则解耦近似的误差应较小。与这一广为接受的信念相反,提供了一个示例来证明该标准不足以解耦近似。实际上,随着模态阻尼矩阵的非对角线元素的幅度减小,耦合效果甚至会增强。讨论和解释了为什么当模态阻尼矩阵变得越来越对角线时误差会增加。

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