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Publication Date:
December 2011
ISSN:
1437-4358
DOI:
10.1515/JNETDY.2011.021

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Editor-in-Chief: Keller, Jürgen U.

Ed. by Michaelides, Efstathios E. / Muschik, Wolfgang

null Andresen, Bjarne / Bejan, Adrian / Brüggemann, Dieter / Buchholz, Rainer / Dinkelacker, Friedrich / Do, Duong / Garcia-Colin, L. S. / Groll, Manfred / Gross, Joachim / Hoffmann, Karl-Heinz / Kalliadasis, Serafim / Kjelstrup, S. / Lebon, Georgy / Maugin, G. A. / Raffa, Robert B. / Rubi, J. Miguel / Scholl, Stephan / Steinchen, Annie / Stockar, Urs / Verhas, Jozsef / Winter, Roland / Zaman, Muhammad / Ahlborn, Boye / Bedeaux, Dick / Fox, Ronald F. / Kizilova, Natalya / Kollmann, W. / Ricard, Jacques / Sieniutycz, Stanislaw / Velarde, M.G. / Papenfuss, Christina / Stark, Holger

4 Issues per year

IMPACT FACTOR 2010: 1.152
Rank 57 out of 132 in category Mechanics and 20 out of 51 in category Thermodynamics in the 2010 Thomson Reuters Journal Citation Report/Science Edition.

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Dynamical temperature and renormalized flux variable in extended thermodynamics of rigid heat conductors

1Departament de Fsica, Universitat Autnoma de Barcelona, 08193 Bellaterra, Catalonia, Spain; and Institut d'Estudis Catalans, Carme 47, 08001 Barcelona, Catalonia, Spain.

2Department of Mathematics and Computer Science, University of Basilicata, Campus Macchia Romana, 85100 Potenza, Italy.

Citation Information: Journal of Non-Equilibrium Thermodynamics. Volume 36, Issue 4, Pages 373–392, ISSN (Online) 1437-4358, ISSN (Print) 0340-0204, DOI: 10.1515/JNETDY.2011.021, December 2011

Publication History:

Received: 18/11/2010;
Accepted: 02/02/2011;
Published Online: 28/02/2012

Abstract

We propose a description of heat conduction in rigid solids in which the classical state space of extended thermodynamics is substituted with another one, spanned by a dynamical semi-empirical temperature and a renormalized flux variable, given by the thermodynamic conjugate of the heat flux and proportional to the heat relaxation time and the dynamical temperature gradient. Propagation of heat pulses in dielectric crystals at low temperatures is analyzed, and the results are compared with those obtained by Lebon et al. (J. Phys.: Condens. Matter, 20 (2008), 025223). We propose a possible experiment in order to check what is the most well-suited definition of temperature in non-equilibrium situations.

Keywords.: Nonlinear heat transport equations; dynamical non-equilibrium temperature; renormalized flux variable

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