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Diagonal dominance of damping and the decoupling approximation in linear vibratory systems

机译:线性振动系统中阻尼的对角优势和解耦近似

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摘要

A common approximation in the analysis of non-classically damped systems is to ignore the off-diagonal elements of the. modal damping matrix. This procedure is termed the decoupling approximation. It is generally believed that errors due to the decoupling approximation should be negligible if the modal damping matrix is diagonally dominant. In addition, the errors are expected to decrease as the modal damping matrix becomes more diagonally dominant. It is shown numerically in this paper that, over a finite range, errors due to the decoupling approximation can increase monotonically at any specified rate while the modal damping matrix becomes more diagonally dominant with its off-diagonal elements decreasing continuously in magnitude. An explanation for these unexpected drifts of decoupling errors is provided with the use of complex coupling coefficients. Small off-diagonal elements in the modal damping matrix are not sufficient to ensure small errors due to the decoupling approximation. Any error-criterion based solely upon the diagonal dominance of the modal damping matrix would not be accurate. (C) 2008 Elsevier Ltd. All rights reserved.
机译:在分析非经典阻尼系统时,通常的近似方法是忽略其非对角线元素。模态阻尼矩阵。该过程称为解耦近似。通常认为,如果模态阻尼矩阵是对角线主导的,则由于去耦近似引起的误差应可忽略不计。另外,随着模态阻尼矩阵在对角线占主导地位,预计误差会减小。本文从数值上显示,在有限范围内,由于解耦近似引起的误差可以以任何指定的速率单调增加,而模态阻尼矩阵则以对角线为主,其非对角线元素的幅度不断减小。解耦误差的这些意想不到的漂移的解释是通过使用复数耦合系数来提供的。由于解耦近似,模态阻尼矩阵中小的对角线元素不足以确保小的误差。仅基于模态阻尼矩阵的对角线优势的任何误差判据都是不准确的。 (C)2008 Elsevier Ltd.保留所有权利。

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