Structure-Borne Power Flow Sensitivity Analysis for General Structural Modifications

J. Young, Kyle R. Myers
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引用次数: 1

Abstract

Power flow between source and passive receiver structures is a common metric for characterizing the dynamics of coupled structures. The objective is generally to reduce the amount of power flow between the structures by means of structural modifications, insofar as to reduce the overall levels of vibration of the coupled system. As such, the sensitivity of power flow to changes in inertial, elastic, and dissipative properties of the structure is quantified. It is shown that power flow into a receiver is not always directly proportional to the amount of damping in the receiver, but is also dependent on the amount of damping present in the source at a given frequency. The sign of the sensitivity can provide information as to when a change in damping will increase or decrease power flow; positive indicates an increase in power flow, negative indicates a decrease. A similar analysis is performed on modifications made to a structure’s mass and stiffness properties. Relationships between power flow and power flow sensitivity are shown for a simple single degree of freedom source-receiver coupling, and is extended to a multi-degree of freedom coupling between two beam structures.
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一般结构改造的结构潮流敏感性分析
源源和无源接收结构之间的功率流是表征耦合结构动力学特性的常用度量。目标通常是通过结构修改来减少结构之间的功率流,从而降低耦合系统的整体振动水平。因此,功率流对结构的惯性、弹性和耗散特性变化的敏感性是量化的。结果表明,进入接收器的功率流并不总是与接收器中的阻尼量成正比,而是取决于给定频率下源中存在的阻尼量。灵敏度的符号可以提供有关阻尼变化何时会增加或减少功率流的信息;正表示功率流增加,负表示功率流减少。对结构质量和刚度特性的修改也进行了类似的分析。给出了简单的单自由度源接收机耦合中功率流和功率流灵敏度之间的关系,并将其推广到两束结构之间的多自由度耦合中。
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