Róbert Kovács
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Articles (18)
On the dynamic thermal conductivity and diffusivity observed in heat pulse experiments
Determining the thermal properties of materials with complex structures is still a major engineering challenge today. The well-known heat pulse experiment can be used to determine the thermal diffusivity by measuring the temperature history as a thermal response for a fast excitation. However, the evaluation of the measurements can be challenging, especially when dealing with non-homogeneous samples. The thermal behavior of such heterogeneous materials may exhibit a response including two-time scales. Therefore, the Fourier equation is not necessarily applicable. The simplest possible alternatives are the 2-temperature models the Guyer–Krumhansl and Jeffreys heat equations. In the present paper, we focus on the interpretation of the Jeffreys heat equation; studying its analytical solution, we present a fitting method for determining the unknown parameters. We also discuss its relation with the other two heat equations, and we offer an interpretation of how to characterize the transient response of heterogeneous materials.
Year:
2024
Collaborators (6)
Krisztina László
Budapest University of Technology and Economics
Donát Takács
Budapest University of Technology and Economics
Balázs Tóth
Associate professor/PhD
University of Miskolc
Tamás FÜLÖP
assistant professor (until 2017-06-30), associate professor (2017-07-01 to present)
Budapest University of Technology and Economics
Mátyás Szücs
Budapest University of Technology and Economics
Francesco Oliveri
Full Professor of Mathematical Physics
University of Messina

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