A maximum-entropy approach to the adiabatic freezing of a supercooled liquid
Abstract
I employ the van der Waals theory of Baus and coworkers to analyze the fast, adiabatic decay of a supercooled liquid in a closed vessel with which the solidification process usually starts. By imposing a further constraint on either the system volume or pressure, I use the maximum-entropy method to quantify the fraction of liquid that is transformed into solid as a function of undercooling and of the amount of a foreign gas that could possibly be also present in the test tube. Upon looking at the implications of thermal and mechanical insulation for the energy cost of forming a solid droplet within the liquid, I identify one situation where the onset of solidification inevitably occurs near the wall in contact with the bath.
Keywords
Cite
@article{arxiv.1304.7593,
title = {A maximum-entropy approach to the adiabatic freezing of a supercooled liquid},
author = {Santi Prestipino},
journal= {arXiv preprint arXiv:1304.7593},
year = {2013}
}
Comments
16 pages, 7 figures