Energy transport and the Fourier heat law in classical systems

Foundations of Physics 16 (1):51-61 (1986)
  Copy   BIBTEX

Abstract

The energy transport in one-dimensional nonlinear systems is discussed. By numerically studying a model system, we verify the Fourier heat law on purely dynamical grounds and we compute the coefficient of thermal conductivity K. The same value ofK is independently obtained by use of the Green-Kubo formalism

Links

PhilArchive



    Upload a copy of this work     Papers currently archived: 92,227

External links

Setup an account with your affiliations in order to access resources via your University's proxy server

Through your library

Similar books and articles

Thermodynamic Uncertainty Relations.Jos Uffink & Janneke van Lith - 1999 - Foundations of Physics 29 (5):655-692.
What do our experiences of heat and cold represent?Richard Gray - 2013 - Philosophical Studies 166 (S1):131-151.
Poincaré transport of frames.R. G. Beil - 1995 - Foundations of Physics 25 (11):1577-1597.
Remnants of reductionism.G. Krishna Vemulapalli & Henry Byerly - 1999 - Foundations of Chemistry 1 (1):17-41.
Relativistic transformations of thermodynamic quantities.Noam Agmon - 1977 - Foundations of Physics 7 (5-6):331-339.
Thermosynthetic Life.D. P. Sheehan - 2007 - Foundations of Physics 37 (12):1774-1797.

Analytics

Added to PP
2013-11-22

Downloads
22 (#712,914)

6 months
5 (#648,432)

Historical graph of downloads
How can I increase my downloads?

Citations of this work

No citations found.

Add more citations

References found in this work

No references found.

Add more references