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首页> 外文期刊>International Journal for Numerical Methods in Engineering >A direct algebraic method for eigensolution sensitivity computation of damped asymmetric systems
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A direct algebraic method for eigensolution sensitivity computation of damped asymmetric systems

机译:阻尼不对称系统特征解灵敏度的直接代数方法

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摘要

In general, the derivative of an eigenvector of a vibrating symmetric system is the solution of a singular problem. Further complications are encountered in dealing with asymmetric damped systems for which the left and right eigenvectors, and their derivatives become distinct and complex. Several approaches have been proposed to overcome this singularity such as Nelson's method and the modal method. In the present work, a new approach is presented for calculating simultaneously the derivatives of the eigenvalues and their associated derivatives of the left and right eigenvectors for asymmetric damped systems. With the proposed method, the exact eigenderivatives can be obtained by solving a first-order linear algebraic system of equations. The method is applied on a 104 DOF ventilator-rotor system, which is used as an example of an asymmetric damped system with distinct eigenvalues. The diameter of the shaft has been chosen as the design parameter. The comparison of the computational time shows that the proposed method is more efficient than both Nelson's approach and the modal method. Copyright (c) 2006 John Wiley & Sons, Ltd.
机译:通常,振动对称系统的本征向量的导数是奇异问题的解。在处理左右对称特征向量及其导数变得不同且复杂的非对称阻尼系统时,还会遇到进一步的复杂情况。已经提出了克服这种奇异性的几种方法,例如尼尔森方法和模态方法。在本工作中,提出了一种新方法,用于同时计算非对称阻尼系统的特征值导数及其左右特征向量的相关导数。通过提出的方法,可以通过求解方程的一阶线性代数系统来获得精确的代数表示。该方法应用于104自由度的通风机-转子系统,该系统用作具有不同特征值的非对称阻尼系统的示例。选择轴的直径作为设计参数。计算时间的比较表明,所提出的方法比尼尔森方法和模态方法都更有效。版权所有(c)2006 John Wiley&Sons,Ltd.

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