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- W2339958340 abstract "In this paper, we show that, using a procedure of classical irreversible thermodynamics (CIT) with internal variables, it is possible to describe the relaxation of thermal phenomena, obtaining some well known results of extended irreversible thermodynamics (EIT). In particular, we introduce as internal variables a vector and a second rank tensor, that influence the thermal transport phenomena, and we derive in the anisotropic and isotropic case, the phenomenological equations for these variables. In the case, in which the medium is isotropic, it is obtained that the total heat flux can be split in two parts: a first contribution [Formula: see text], governed by Fourier law, and a second contribution [Formula: see text], obeying Maxwell–Cattaneo–Vernotte (MCV) equation, in which a relaxation time is present. The obtained results may have applications in describing the thermal behavior in nanosystems (semiconductors, nanotubes[Formula: see text]), where the phenomena are fast and there are high-frequency thermal waves." @default.
- W2339958340 created "2016-06-24" @default.
- W2339958340 creator A5008442878 @default.
- W2339958340 creator A5066945857 @default.
- W2339958340 date "2016-09-01" @default.
- W2339958340 modified "2023-09-27" @default.
- W2339958340 title "On heat equation in the framework of classic irreversible thermodynamics with internal variables" @default.
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- W2339958340 doi "https://doi.org/10.1142/s021988781640003x" @default.
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