Deterministic motion of the controversial piston in the thermodynamic limit
Abstract
We consider the evolution of a system composed of non-interacting point particles of mass in a cylindrical container divided into two regions by a movable adiabatic wall (the adiabatic piston). We study the thermodynamic limit for the piston where the area of the cross-section, the mass of the piston, and the number of particles go to infinity keeping and fixed. The length of the container is a fixed parameter which can be either finite or infinite. In this thermodynamic limit we show that the motion of the piston is deterministic and the evolution is adiabatic. Moreover if the length of the container is infinite, we show that the piston evolves toward a stationary state with velocity approximately proportional to the pressure difference. If the length of the container is finite, introducing a simplifying assumption we show that the system evolves with either weak or strong damping toward a well-defined state of mechanical equilibrium where the pressures are the same, but the temperatures different. Numerical simulations are presented to illustrate possible evolutions and to check the validity of the assumption.
Keywords
Cite
@article{arxiv.cond-mat/0109542,
title = {Deterministic motion of the controversial piston in the thermodynamic limit},
author = {Christian Gruber and Séverine Pache and Annick Lesne},
journal= {arXiv preprint arXiv:cond-mat/0109542},
year = {2016}
}
Comments
33 pages, 4 figures, to appear in J. Stat. Phys