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A Unification between Dynamical System Theory and Thermodynamics Involving an Energy, Mass, and Entropy State Space Formalism

机译:动力学系统理论与涉及能量,质量和熵状态空间形式主义的热力学之间的统一

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In this paper, we combine the two universalisms of thermodynamics and dynamical systems theory to develop a dynamical system formalism for classical thermodynamics. Specifically, using a compartmental dynamical system energy flow model involving heat flow, work energy, and chemical reactions, we develop a state-space dynamical system model that captures the key aspects of thermodynamics, including its fundamental laws. In addition, we show that our thermodynamically consistent dynamical system model is globally semistable with system states converging to a state of temperature equipartition. Furthermore, in the presence of chemical reactions, we use the law of mass-action and the notion of chemical potential to show that the dynamic system states converge to a state of temperature equipartition and zero affinity corresponding to a state of chemical equilibrium.
机译:在本文中,我们结合了热力学的两个普遍性和动力学系统理论,为经典的热力学开发了动力学系统形式主义。具体来说,使用包含热流,功能和化学反应的隔室动力学系统能流模型,我们开发了一个状态空间动力学系统模型,该模型捕获了热力学的关键方面,包括其基本定律。此外,我们证明我们的热力学一致的动力学系统模型是全局半稳定的,系统状态收敛到温度均分状态。此外,在存在化学反应的情况下,我们使用质量作用定律和化学势的概念来证明动态系统状态收敛到温度均分状态,并且零亲和力对应于化学平衡状态。

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