This study focuses on heat conduction in unidimensional lattices also known as micro-structured rods. The lattice thermal properties can be representative of concentrated thermal interface phases in one-dimensional segmented rods. The exact solution of the linear time-dependent spatial difference equation associated with the lattice problem is presented for some given initial and boundary conditions. This exact solution is compared to the quasicontinuum approximation built by continualization of the lattice equations. A rational-based asymptotic expansion of the pseudo-differential problem leads to an equivalent nonlocal-type Fourier’s law. The differential nonlocal Fourier’s law is analysed with respect to thermodynamic models available i...
A nonlocal model for heat transfer with phonons and electrons is applied to infer the steady-state r...
A nonlocal model for heat transfer with phonons and electrons is applied to infer the steady-state r...
A model of nonlocal heat transfer at nanoscale in rigid bodies is considered. Depending on the relev...
AbstractThis study focuses on heat conduction in unidimensional lattices also known as microstructur...
Nonlocal models of thermodynamics are becoming more and more popular in the modern world. Such model...
In the framework of Extended Irreversible Thermodynamics we develop a model for coupled heat conduct...
We explore nonlocal effects in radially-symmetric heat transport in silicon thin layers and in graph...
The non-stationary heat conduction in an infinitely wide plane slab with a prescribed boundary heat ...
The divergence of the thermal conductivity in the thermodynamic limit is thoroughly investigated. Th...
A non-local and non-linear thermodynamical model of heat transfer at nanoscale beyond the well-known...
Classical Fourier law can accurately describe most heat conduction problems. But for ultrafast heat ...
Heat conduction is an important energy transport process in nature. Phonon is the major en...
Phonon heat conduction over length scales comparable to their mean free paths is a topic of consider...
Two aspects of conductive heat are focused here (i) the nature of conductive heat, defined as that f...
A nonlocal model for heat transfer with phonons and electrons is applied to infer the steady-state r...
A nonlocal model for heat transfer with phonons and electrons is applied to infer the steady-state r...
A model of nonlocal heat transfer at nanoscale in rigid bodies is considered. Depending on the relev...
AbstractThis study focuses on heat conduction in unidimensional lattices also known as microstructur...
Nonlocal models of thermodynamics are becoming more and more popular in the modern world. Such model...
In the framework of Extended Irreversible Thermodynamics we develop a model for coupled heat conduct...
We explore nonlocal effects in radially-symmetric heat transport in silicon thin layers and in graph...
The non-stationary heat conduction in an infinitely wide plane slab with a prescribed boundary heat ...
The divergence of the thermal conductivity in the thermodynamic limit is thoroughly investigated. Th...
A non-local and non-linear thermodynamical model of heat transfer at nanoscale beyond the well-known...
Classical Fourier law can accurately describe most heat conduction problems. But for ultrafast heat ...
Heat conduction is an important energy transport process in nature. Phonon is the major en...
Phonon heat conduction over length scales comparable to their mean free paths is a topic of consider...
Two aspects of conductive heat are focused here (i) the nature of conductive heat, defined as that f...
A nonlocal model for heat transfer with phonons and electrons is applied to infer the steady-state r...
A nonlocal model for heat transfer with phonons and electrons is applied to infer the steady-state r...
A model of nonlocal heat transfer at nanoscale in rigid bodies is considered. Depending on the relev...