Detail publikačního výsledku

A mathematical and computational view of non-stationary thermal transfer

VALA, J.

Originální název

A mathematical and computational view of non-stationary thermal transfer

Anglický název

A mathematical and computational view of non-stationary thermal transfer

Druh

Stať ve sborníku v databázi WoS či Scopus

Originální abstrakt

Computational modelling of non-stationary thermal transfer, coming from the principle of conservation of energy and Fourier constitutive relation, leads to the analysis of initial and boundary value problem for a partial differential equation of parabolic type with unknown temperature where three material characteristics occur typically: thermal conductivity, thermal capacity and thermal transfer coefficient, all dependent on temperature again in general. We shall present how the solution of such problem can be always constructed using the method of discretization in time, e. g. appropriate types of Rothe sequences. For practical evaluations, to avoid infinite-dimensional function spaces, this method is combined with some finite element or similar technique where the optimal balance between i) rapid and robust inexpensive computations and ii) their stability properties related to the choice of time steps belongs to the recent research priorities, with the development stimulated by the progress both in the theory of numerical algorithms and in the computational hardware and software.

Anglický abstrakt

Computational modelling of non-stationary thermal transfer, coming from the principle of conservation of energy and Fourier constitutive relation, leads to the analysis of initial and boundary value problem for a partial differential equation of parabolic type with unknown temperature where three material characteristics occur typically: thermal conductivity, thermal capacity and thermal transfer coefficient, all dependent on temperature again in general. We shall present how the solution of such problem can be always constructed using the method of discretization in time, e. g. appropriate types of Rothe sequences. For practical evaluations, to avoid infinite-dimensional function spaces, this method is combined with some finite element or similar technique where the optimal balance between i) rapid and robust inexpensive computations and ii) their stability properties related to the choice of time steps belongs to the recent research priorities, with the development stimulated by the progress both in the theory of numerical algorithms and in the computational hardware and software.

Klíčová slova

thermal transfer; mathematical and computational modelling

Klíčová slova v angličtině

thermal transfer; mathematical and computational modelling

Autoři

VALA, J.

Rok RIV

2026

Vydáno

04.09.2025

Nakladatel

American Institute of Physics

Místo

Melville (USA)

Kniha

Thermophysics 2024

Periodikum

AIP conference proceedings

Svazek

3355

Číslo

1

Stát

Spojené státy americké

Strany od

020016-1

Strany do

020016-8

Strany počet

8