Sustaining a temperature difference
Abstract
We derive an expression for the minimal rate of entropy that sustains two reservoirs at different temperatures and . The law displays an intuitive dependency on the relative distance and a characterisic dependency on the boundary temperatures. First we give a back-of-envelope argument based on the Fourier Law (FL) of conduction, showing that the least-dissipation profile is exponential. Then we revisit a model of a chain of oscillators, each coupled to a heat reservoir. In the limit of large damping we reobtain the exponential and squared-log behaviors, providing a self-consistent derivation of the FL. For small damping "equipartition frustration" leads to a well-known balistic behaviour, whose incompatibility with the FL posed a long-time challenge.
Keywords
Cite
@article{arxiv.2005.06289,
title = {Sustaining a temperature difference},
author = {Matteo Polettini and Alberto Garilli},
journal= {arXiv preprint arXiv:2005.06289},
year = {2020}
}
Comments
Re-Submission to SciPost