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首页> 外文期刊>The Journal of the Acoustical Society of America >Theoretical foundations of apparent-damping phenomena and nearly irreversible energy exchange in linear conservative systems
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Theoretical foundations of apparent-damping phenomena and nearly irreversible energy exchange in linear conservative systems

机译:线性保守系统中表观阻尼现象和几乎不可逆的能量交换的理论基础

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摘要

This paper discusses a class of unexpected irreversible phenomena that can develop in linear conservative systems and provides a theoretical foundation that explains the underlying principles. Recent studies have shown that energy can be introduced to a linear system with near irreversibility, or energy within a system can migrate to a subsystem nearly irreversibly, even in the absence of dissipation, provided that the system has a particular natural frequency distribution. The present work introduces a general theory that provides a mathematical foundation and a physical explanation for the near irreversibility phenomena observed and reported in previous publications. Inspired by the properties of probability distribution functions, the general formulation developed here is based on particular properties of harmonic series, which form the-common basis of linear dynamic system models. The results demonstrate the existence of a special class of linear nondissipative dynamic systems that exhibit nearly irreversible energy exchange and possess a decaying impulse response. In addition to uncovering a new class of dynamic system properties, the results have far-reaching implications in engineering applications where classical vibration damping or absorption techniques may not be effective. Furthermore, the results also support the notion of nearly irreversible energy transfer in conservative linear systems, which until now has been a concept associated exclusively with nonlinear systerns.(c) 2007 Acoustical Society of America.
机译:本文讨论了可以在线性保守系统中发展的一类不可预期的不可逆现象,并为解释其基本原理提供了理论基础。最近的研究表明,可以将能量引入具有几乎不可逆性的线性系统,或者,即使系统不存在耗散,系统中的能量也可以几乎不可逆地迁移到子系统,前提是该系统具有特定的固有频率分布。本工作介绍了一个通用理论,该理论为先前出版物中观察到和报道的几乎不可逆现象提供了数学基础和物理解释。受概率分布函数属性的启发,此处开发的一般公式基于谐波序列的特定属性,这些属性构成了线性动态系统模型的通用基础。结果表明存在一类特殊的线性非耗散动力系统,该系统具有几乎不可逆的能量交换并具有衰减的脉冲响应。除了揭示一类新的动态系统特性之外,这些结果在工程应用中也具有深远的意义,在工程应用中传统的减振或吸收技术可能无效。此外,这些结果还支持保守线性系统中几乎不可逆的能量转移的概念,到目前为止,这一直是专门与非线性系统相关的概念。(c)2007美国声学学会。

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