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Transport of Mutually Cooperating Triplets of Thermal Fourier Fluctuations Through Two-Phase Periodically Layered Partition Wall Cover

Transport of Mutually Cooperating Triplets of Thermal Fourier Fluctuations Through Two-Phase Periodically Layered Partition Wall

By: Amelia Albin and  Dorota Kula  
Open Access
|Mar 2022

Abstract

The paper analyses boundary effect behaviour in a building partition made of a two-component layered composite. A two-dimensional model of such barrier has been adopted in which the boundary effect behaviour is described by a system of ODE’s. It has been proved that, for selected types of fluctuations, a hypothesis formulated in the end of the paper is true, i.e. a partition reacts for the presence of boundary package of fluctuations consisting of one even and two odd fluctuations merely with a typical exponentially damped transport of these boundary fluctuations. Their sinusoidal pulsations in the direction transversal to the periodicity directions are not possible. The exponential damping is maximal for components with very different material properties (values of parameters kII/kI and ηI close to zero). Such situations correspond to a characteristic peak of the graphs included in the paper.

Language: English
Page range: 37 - 54
Submitted on: Nov 24, 2021
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Accepted on: Dec 15, 2021
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Published on: Mar 12, 2022
Published by: Sciendo
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2022 Amelia Albin, Dorota Kula, published by Sciendo
This work is licensed under the Creative Commons Attribution-NonCommercial 4.0 License.