The physical and qualitative analysis of fluctuations in air and vapour concentrations in a porous medium
This work presents the development and physical analysis of a sweat transport model that couples the fluctuations in air and vapour concentrations, and temperature, in a one-dimensional porous clothing assembly. The clothing is exposed to inherent time-varying conditions due to variations in the bod...
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Online Access: | https://royalsocietypublishing.org/doi/pdf/10.1098/rsos.171954 |
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doaj-93aa543244ac473dbdbc870864e4ea0b2020-11-25T04:06:37ZengThe Royal SocietyRoyal Society Open Science2054-57032018-01-015510.1098/rsos.171954171954The physical and qualitative analysis of fluctuations in air and vapour concentrations in a porous mediumY. PoorunM. Z. DauhooM. BessafiM. K. ElaheeA. GopaulA. KhoodaruthThis work presents the development and physical analysis of a sweat transport model that couples the fluctuations in air and vapour concentrations, and temperature, in a one-dimensional porous clothing assembly. The clothing is exposed to inherent time-varying conditions due to variations in the body temperature and ambient conditions. These fluctuations are governed by a coupled system of nonlinear relaxation–transport–diffusion PDEs of Petrovskii parabolic type. A condition for the well-posedness of the resulting system of equations is derived. It is shown that the energy of the diffusion part of the system is exponentially decreasing. The boundedness and stability of the system of equations is thus confirmed. The variational formulation of the system is derived, and the existence and uniqueness of a weak solution is demonstrated analytically. This system is shown to conserve positivity. The difficulty of obtaining an analytical solution due to the complexity of the problem, urges for a numerical approach. A comparison of three cases is made using the Crank–Nicolson finite difference method (FDM). Numerical experiments show the existence of singular coefficient matrices at the site of phase change. Furthermore, the steady-state profiles of temperature, air and vapour concentrations influence the attenuation of fluctuations. Numerical results verify the analytical findings of this work.https://royalsocietypublishing.org/doi/pdf/10.1098/rsos.171954fluctuationssteady statelinearizationrelaxation–transport–diffusionair-vapour concentrationqualitative and numerical analysis |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Y. Poorun M. Z. Dauhoo M. Bessafi M. K. Elahee A. Gopaul A. Khoodaruth |
spellingShingle |
Y. Poorun M. Z. Dauhoo M. Bessafi M. K. Elahee A. Gopaul A. Khoodaruth The physical and qualitative analysis of fluctuations in air and vapour concentrations in a porous medium Royal Society Open Science fluctuations steady state linearization relaxation–transport–diffusion air-vapour concentration qualitative and numerical analysis |
author_facet |
Y. Poorun M. Z. Dauhoo M. Bessafi M. K. Elahee A. Gopaul A. Khoodaruth |
author_sort |
Y. Poorun |
title |
The physical and qualitative analysis of fluctuations in air and vapour concentrations in a porous medium |
title_short |
The physical and qualitative analysis of fluctuations in air and vapour concentrations in a porous medium |
title_full |
The physical and qualitative analysis of fluctuations in air and vapour concentrations in a porous medium |
title_fullStr |
The physical and qualitative analysis of fluctuations in air and vapour concentrations in a porous medium |
title_full_unstemmed |
The physical and qualitative analysis of fluctuations in air and vapour concentrations in a porous medium |
title_sort |
physical and qualitative analysis of fluctuations in air and vapour concentrations in a porous medium |
publisher |
The Royal Society |
series |
Royal Society Open Science |
issn |
2054-5703 |
publishDate |
2018-01-01 |
description |
This work presents the development and physical analysis of a sweat transport model that couples the fluctuations in air and vapour concentrations, and temperature, in a one-dimensional porous clothing assembly. The clothing is exposed to inherent time-varying conditions due to variations in the body temperature and ambient conditions. These fluctuations are governed by a coupled system of nonlinear relaxation–transport–diffusion PDEs of Petrovskii parabolic type. A condition for the well-posedness of the resulting system of equations is derived. It is shown that the energy of the diffusion part of the system is exponentially decreasing. The boundedness and stability of the system of equations is thus confirmed. The variational formulation of the system is derived, and the existence and uniqueness of a weak solution is demonstrated analytically. This system is shown to conserve positivity. The difficulty of obtaining an analytical solution due to the complexity of the problem, urges for a numerical approach. A comparison of three cases is made using the Crank–Nicolson finite difference method (FDM). Numerical experiments show the existence of singular coefficient matrices at the site of phase change. Furthermore, the steady-state profiles of temperature, air and vapour concentrations influence the attenuation of fluctuations. Numerical results verify the analytical findings of this work. |
topic |
fluctuations steady state linearization relaxation–transport–diffusion air-vapour concentration qualitative and numerical analysis |
url |
https://royalsocietypublishing.org/doi/pdf/10.1098/rsos.171954 |
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