Grmela Miroslav, Lebon Georgy, Dubois Charles
École Polytechnique de Montréal, Montréal, Québec, Canada.
Phys Rev E Stat Nonlin Soft Matter Phys. 2011 Jun;83(6 Pt 1):061134. doi: 10.1103/PhysRevE.83.061134. Epub 2011 Jun 22.
Heat transfer is investigated on three levels of description: Fourier, Cattaneo, and Peierls. The microscopic nature of the heat that becomes important, in particular in nanoscale systems, is characterized by a vector field related to the heat flux on the Cattaneo level and by the phonon distribution function on the Peierls level. All dynamical theories discussed in the paper are fully nonlinear and all are proven to be compatible among themselves, with equilibrium thermodynamics, and with mechanics. An investigation of the first two compatibilities gives rise to potentials having the physical interpretation of nonequilibrium entropies. The compatibility with mechanics is manifested by the Hamiltonian structure of the time-reversible part of the time evolution.
傅里叶层面、卡塔尼奥层面和派尔斯层面。在纳米尺度系统中变得尤为重要的热的微观本质,在卡塔尼奥层面上由与热流相关的矢量场来表征,在派尔斯层面上由声子分布函数来表征。本文中讨论的所有动力学理论都是完全非线性的,并且都被证明彼此之间、与平衡热力学以及与力学是兼容的。对前两种兼容性的研究产生了具有非平衡熵物理解释的势。与力学的兼容性通过时间演化的时间可逆部分的哈密顿结构得以体现。