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Energy equipartition and the emergence of damping in lossless systems

机译:能量均分和无损系统中阻尼的出现

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The principle of equipartition of energy is usually viewed as a statistical result formulated in terms of the probability distribution of configurations, that is, entropy. In this paper we use deterministic linear systems techniques to analyze the vibrational energy of systems of undamped coupled oscillators with identical coupling. Our approach is based on time averaging of squared outputs of the system and thus avoids both recurrence and statistical arguments. We first consider a single undamped oscillator and show that the time averaged potential energy and the time-averaged kinetic energy converge to the same value. Next, we consider a collection of n identical undamped oscillators with lossless coupling. As in the case of a single oscillator, equipartition of energy holds for the total system kinetic and potential energies. We focus on the equipartition of oscillator energy, that is, the equal distribution of energy among oscillators, regardless of the form of energy. We derive expressions for the transient and steady-state behavior of each oscillator.
机译:能量平均分配的原理通常被视为根据构型(即熵)的概率分布制定的统计结果。在本文中,我们使用确定性线性系统技术来分析具有相同耦合的无阻尼耦合振荡器的系统的振动能。我们的方法基于系统平方输出的时间平均,因此避免了重复发生和统计争论。我们首先考虑单个无阻尼振荡器,并证明时均势能和时均动能收敛于相同的值。接下来,我们考虑具有无损耦合的n个相同的非阻尼振荡器的集合。与单个振荡器的情况一样,能量的均分保持整个系统的动能和势能。我们关注于振荡器能量的均分,也就是说,无论能量的形式如何,振荡器之间的能量均等分配。我们推导了每个振荡器的瞬态和稳态行为的表达式。

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