On the Generalized Heat Conduction Laws in the Reversible Thermodynamics of a Continuous Medium
- Authors: Lomakin E.V.1,2, Lurie S.A.2,3, Belov P.A.3, Rabinskiy L.N.2
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Affiliations:
- Moscow State University
- Moscow Aviation Institute (National Research University)
- Institute of Applied Mechanics, Russian Academy of Sciences
- Issue: Vol 63, No 12 (2018)
- Pages: 503-507
- Section: Physics
- URL: https://journals.rcsi.science/1028-3358/article/view/193048
- DOI: https://doi.org/10.1134/S102833581812011X
- ID: 193048
Cite item
Abstract
A general covariance variational model of reversible thermodynamics is developed in which the kinematic and force variables are the components of unified tensor objects in the space−time continuum, and the resolving equations of the dynamic thermoelasticity and heat-conduction of an ideal (defect-free) media are described by the 4D-vector equation. It is shown that the formulations of relations of the generalized Duhamel−Neumann representation and the Maxwell−Cattaneo law follow directly from the constitutive relations of the space−time-continuum model without additional hypotheses and assumptions. It is proved that the Maxwell−Cattaneo and Fourier generalized heat-conduction laws are unambiguously characterized by well-known thermomechanical parameters determined under isothermal and adiabatic conditions for reversible coupled deformation processes and heat-conduction despite the fact that one usually relates both the Fourier law and the relaxation time in the Maxwell−Cattaneo law with the dissipative processes.
About the authors
E. V. Lomakin
Moscow State University; Moscow Aviation Institute (National Research University)
Email: salurie@mail.ru
Russian Federation, Moscow, 119991; Moscow, 125993
S. A. Lurie
Moscow Aviation Institute (National Research University); Institute of Applied Mechanics, Russian Academyof Sciences
Author for correspondence.
Email: salurie@mail.ru
Russian Federation, Moscow, 125993; Moscow, 125040
P. A. Belov
Institute of Applied Mechanics, Russian Academyof Sciences
Email: salurie@mail.ru
Russian Federation, Moscow, 125040
L. N. Rabinskiy
Moscow Aviation Institute (National Research University)
Email: salurie@mail.ru
Russian Federation, Moscow, 125993
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