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首页> 外文期刊>Journal of Sound and Vibration >Dynamic response of non-classically damped structures via reduced-order complex modal analysis: Two novel truncation measures
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Dynamic response of non-classically damped structures via reduced-order complex modal analysis: Two novel truncation measures

机译:通过降低的复杂模态分析的非经典阻尼结构的动态响应:两种新型截断措施

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The Caughey-O'Kelly condition, which defines a specific property of the damping matrix with respect to the mass and stiffness matrix, is violated in several cases of interest in earthquake engineering (e.g. seismic base isolation, supplemental energy dissipation devices, etc.). In these circumstances, non-classically damped systems are associated with complex-valued natural modes of vibration, and the complex modal superposition approach can be invoked as a generalization of the real-valued classical modal analysis to decouple the equations of motion and to compute the earthquake response. In analogy to the classical modal analysis, measures that quantify the error resulting from truncating up to a certain mode are desirable, especially for structures with hundreds or thousands of degrees of freedom. The concept of modal participating mass ratio, widely used in classical modal analysis, is no longer applicable to non-classically damped systems. The authors introduce here two novel measures related to a generalized modal mass ratio and to a modal dissipation ratio of each mode in the complex modal analysis framework. These two real-valued measures, whose sum is equal to one when all the modes are present, should be simultaneously considered to anticipate the importance of each mode in the complex modal superposition approach. Therefore, they are useful to determine the number of modes to retain in a reduced-order model. These two measures and the novel concepts are illustrated through some simple numerical examples of free vibration response and earthquake response of non-classically damped systems, including structures equipped with fluid viscous dampers and base-isolated buildings. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在地震工程中的几种感兴趣的情况下侵犯了对质量和僵硬基质的阻尼矩阵的特定性质的Caughey-O'kelly条件(例如,地震基础隔离,补充能量耗散装置等)侵犯。在这种情况下,非经典阻尼系统与复值的自然模式相关联,并且复杂的模态叠加方法可以作为实际值的经典模态分析的概括地调用,以将运动方程解耦并计算地震反应。与古典模态分析类似,可以理想地定量截断截断截断的误差的措施,特别是对于具有数百或数千度自由度的结构。模态参与质量比的概念,广泛用于经典模态分析,不再适用于非经典阻尼系统。作者在这里介绍了与广义模态质量比相关的两种新措施以及复杂模态分析框架中的每种模式的模态耗散比。这两个实值措施,其总和等于当存在所有模式时,应同时考虑预测每个模式在复杂的模态叠加方法中的重要性。因此,它们可用于确定以减少阶模型保留的模式数量。这两种措施和新颖的概念是通过非经典阻尼系统的自由振动响应和地震响应的一些简单的数值例子来说明的,包括配备有流体粘性阻尼器和基部隔离建筑的结构。 (c)2019 Elsevier Ltd.保留所有权利。

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