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An extension of Hamiltonian systems to the thermodynamic phase space: Towards a geometry of nonreversible processes

机译:哈密​​顿体系向热力学相空间的扩展:走向不可逆过程的几何

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It is shown that the intrinsic geometry associated with equilibrium thermodynamics, namely the contact geometry, provides also a suitable framework in order to deal with irreversible thermodynamical processes. Therefore we introduce a class of dynamical systems on contact manifolds, called conservative contact systems, defined as contact vector fields generated by some contact Hamiltonian function satisfying a compatibility condition with some Legendre submanifold of the contact manifold. Considering physical systems' modeling, the Legendre submanifold corresponds to the definition of the thermodynamical properties of the system and the contact Hamiltonian function corresponds to the definition of some irreversible processes taking place in the system. Open thermodynamical systems may also be modeled by augmenting the conservative contact systems with some input and output variables (in the sense of automatic control) and so-called input vector fields and lead to the definition of port contact systems. Finally complex systems consisting of coupled simple thermodynamical or mechanical systems may be represented by the composition of such port contact systems through algebraic relations called interconnection structure. Two examples illustrate this composition of contact systems: a gas under a piston submitted to some external force and the conduction of heat between two media with external thermostat.
机译:结果表明,与平衡热力学有关的内在几何形状,即接触几何形状,也为处理不可逆的热力学过程提供了合适的框架。因此,我们在接触流形上引入了一类动力学系统,称为保守接触系统,定义为由满足接触流形的某些Legendre子流形的满足条件的接触汉密尔顿函数生成的接触矢量场。考虑物理系统的建模,Legendre子流形对应于系统热力学性质的定义,接触汉密尔顿函数对应于系统中发生的某些不可逆过程的定义。开放式热力学系统也可以通过使用一些输入和输出变量(在自动控制的意义上)和所谓的输入矢量场来增强保守的接触系统来建模,从而定义端口接触系统。最后,由耦合的简单热力学或机械系统组成的复杂系统,可以通过称为互连结构的代数关系由这种端口接触系统的组成来表示。有两个例子说明了接触系统的这种组成:活塞下方的气体受到一定的外力作用,以及带有外部恒温器的两种介质之间的热传导。

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