AbstractThe fractional single-phase-lagging (FSPL) heat conduction model is obtained by combining scalar time fractional conservation equation to the single-phase-lagging (SPL) heat conduction model. Based on the FSPL heat conduction model, anomalous diffusion within a finite thin film is investigated. The effect of different parameters on solution has been observed and studied the asymptotic behavior of the FSPL model. The analytical solution is obtained using Laplace transform method. The whole analysis is presented in dimensionless form. Numerical examples of particular interest have been studied and discussed in details
A fractional dual-phase-lag constitutive relation is proposed to describe the anomalous diffusion in...
This paper considers a novel distributed order time fractional dual-phase-lag model to analyze the a...
In this paper we present a new numerical technique for 1D, 2D, and 3D time-fractional second order d...
The fractional single-phase-lagging (FSPL) heat conduction model is obtained by combining scalar tim...
AbstractThe fractional single-phase-lagging (FSPL) heat conduction model is obtained by combining sc...
In the paper, a solution of the time-fractional single-phase-lagging heat conduction problem in fini...
In this report, the equivalence between the phase-lagging and fractional (fractal) models of anomalo...
In the Fourier heat conduction equation, when the flux definition is expressed as the product of a c...
The classical Fourier’s law of heat conduction has been used widely for all analyzes of heat transfe...
The classical Fourier’s law of heat conduction has been used widely for all analyzes of heat transfe...
The aim of this article is to give an overview of the current research towards applications of fract...
In recent times, fractional calculus has gained popularity in various types of engineering applicati...
Fractional calculus is the branch of mathematical analysis that deals with operators interpreted as ...
In this work, the relaxation parameter (τ) and fractionality order (α) in the fractional single phas...
In the paper, a fundamental solution of the fractional dual-phase-lagging heat conduction problem is...
A fractional dual-phase-lag constitutive relation is proposed to describe the anomalous diffusion in...
This paper considers a novel distributed order time fractional dual-phase-lag model to analyze the a...
In this paper we present a new numerical technique for 1D, 2D, and 3D time-fractional second order d...
The fractional single-phase-lagging (FSPL) heat conduction model is obtained by combining scalar tim...
AbstractThe fractional single-phase-lagging (FSPL) heat conduction model is obtained by combining sc...
In the paper, a solution of the time-fractional single-phase-lagging heat conduction problem in fini...
In this report, the equivalence between the phase-lagging and fractional (fractal) models of anomalo...
In the Fourier heat conduction equation, when the flux definition is expressed as the product of a c...
The classical Fourier’s law of heat conduction has been used widely for all analyzes of heat transfe...
The classical Fourier’s law of heat conduction has been used widely for all analyzes of heat transfe...
The aim of this article is to give an overview of the current research towards applications of fract...
In recent times, fractional calculus has gained popularity in various types of engineering applicati...
Fractional calculus is the branch of mathematical analysis that deals with operators interpreted as ...
In this work, the relaxation parameter (τ) and fractionality order (α) in the fractional single phas...
In the paper, a fundamental solution of the fractional dual-phase-lagging heat conduction problem is...
A fractional dual-phase-lag constitutive relation is proposed to describe the anomalous diffusion in...
This paper considers a novel distributed order time fractional dual-phase-lag model to analyze the a...
In this paper we present a new numerical technique for 1D, 2D, and 3D time-fractional second order d...