Based on the Cattaneo-Christov model and dual-phase-lag model, a novel constitutive model is proposed to study macroscopic and microscopic heat transfer mechanisms in the moving media. Formulated governing equation contains relaxation parameters and time fractional derivative with the highest order of 1 + α (0 < α ≤ 1) which possesses both the relaxation characteristic and memory characteristic. With the help of L1-scheme, solutions are obtained by numerical difference method. Two applications with the new proposed model are given. One is to analyze the heat conduction in processed meat which analyzes the effects of convection velocity on the temperature distribution. The other is to study the thermal behavior of a biological tissue that th...
This paper extends the method, in which a Volterra-type integral equation that relates the local val...
This paper extends the method, in which a Volterra-type integral equation that relates the local val...
In this work, the dual-phase-lagging model of the microscale heat conduction is re-derived analytica...
An improved constitutive model is proposed in which the time space upper-convected derivative is use...
In this report, the equivalence between the phase-lagging and fractional (fractal) models of anomalo...
We compare the model of heat transfer proposed by Cattaneo, Maxwell, and Vernotte with another one, ...
Fractional order derivatives are global operators for which the time fractional order derivative pos...
Copyright © 2013 M. A. Castro et al. This is an open access article distributed under the Creative C...
There is common understanding that classical constitutive equations such as Fick’s and Fourier’s law...
Macroscale thermal models have been developed for biological tissues either by the mixture theory of...
The current work aims to investigate the features of an improved heat conduction relation and chemic...
A novel time fractional Cattaneo-Christov flux model is introduced in analyzing boundary layer heat ...
Mathematical modelling of transport phenomena in food processes is vital to understand the process d...
Macroscale thermal models for biological tissues can be developed either by the mixture theory of co...
In the present work the single-phase-lagging heat conduction model is re-derived analytically from t...
This paper extends the method, in which a Volterra-type integral equation that relates the local val...
This paper extends the method, in which a Volterra-type integral equation that relates the local val...
In this work, the dual-phase-lagging model of the microscale heat conduction is re-derived analytica...
An improved constitutive model is proposed in which the time space upper-convected derivative is use...
In this report, the equivalence between the phase-lagging and fractional (fractal) models of anomalo...
We compare the model of heat transfer proposed by Cattaneo, Maxwell, and Vernotte with another one, ...
Fractional order derivatives are global operators for which the time fractional order derivative pos...
Copyright © 2013 M. A. Castro et al. This is an open access article distributed under the Creative C...
There is common understanding that classical constitutive equations such as Fick’s and Fourier’s law...
Macroscale thermal models have been developed for biological tissues either by the mixture theory of...
The current work aims to investigate the features of an improved heat conduction relation and chemic...
A novel time fractional Cattaneo-Christov flux model is introduced in analyzing boundary layer heat ...
Mathematical modelling of transport phenomena in food processes is vital to understand the process d...
Macroscale thermal models for biological tissues can be developed either by the mixture theory of co...
In the present work the single-phase-lagging heat conduction model is re-derived analytically from t...
This paper extends the method, in which a Volterra-type integral equation that relates the local val...
This paper extends the method, in which a Volterra-type integral equation that relates the local val...
In this work, the dual-phase-lagging model of the microscale heat conduction is re-derived analytica...