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Condensed matter physics, hybrid energy and entropy principles, and the hybrid first and second laws of thermodynamics

机译:凝聚态物理,混合能量和熵原理以及热力学的混合第一和第二定律

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摘要

In this paper, we develop an energy-based, large-scale hybrid dynamical system model to present a generic framework for hybrid thermodynamics involving hybrid energy and entropy conservation and nonconservation principles. Specifically, using a hybrid compartmental dynamical system energy flow model we develop a hybrid state-space dynamical system formalism for addressing critical phenomena and discontinuous phase transitions in thermodynamics and provide hybrid extensions to the first and second laws of thermodynamics. In addition, using Lyapunov stability theory for impulsive differential equations, we show that our hybrid large-scale thermodynamic energy flow model has convergent trajectories to Lyapunov stable equilibria determined by the system initial subsystem energies. Moreover, we show that the steady-state distribution of the hybrid large-scale system energies is uniformly distributed over all of the subsystems, leading to system energy equipartitioning corresponding to a maximum entropy equilibrium state. (C) 2019 Elsevier B.V. All rights reserved.
机译:在本文中,我们开发了一个基于能量的大规模混合动力系统模型,为混合热力学提供了一个通用框架,该框架涉及混合能量以及熵守恒和非守恒原理。具体而言,使用混合隔室动力学系统能流模型,我们开发了一种混合状态空间动力学系统形式,用于解决热力学中的关键现象和不连续相变,并为热力学的第一定律和第二定律提供了混合扩展。此外,将李雅普诺夫稳定性理论用于脉冲微分方程,我们证明了我们的混合大型热力学能流模型具有由系统初始子系统能量决定的李雅普诺夫稳定平衡的收敛轨迹。此外,我们证明了混合大型系统能量的稳态分布在所有子系统上均匀分布,导致系统能量平均分配对应于最大熵平衡状态。 (C)2019 Elsevier B.V.保留所有权利。

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