Impact of dynamic thermal conductivity change of EPS insulation on temperature variation through a wall assembly

This paper evaluates the effect of dynamic thermal conductivity (λ) change of expanded polystyrene insulation (EPS) on temperature change through a conventional wall assembly at varying positions of the insulation within the assembly in question. According to the findings, in the case of the applica...

Full description

Bibliographic Details
Main Authors: Maatouk Khoukhi, Shaimaa Abdelbaqi, Ahmed Hassan, Abeer Darsaleh
Format: Article
Language:English
Published: Elsevier 2021-06-01
Series:Case Studies in Thermal Engineering
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2214157X21000800
id doaj-032416e75cf94d53b438e7afe87aa728
record_format Article
spelling doaj-032416e75cf94d53b438e7afe87aa7282021-04-30T07:21:46ZengElsevierCase Studies in Thermal Engineering2214-157X2021-06-0125100917Impact of dynamic thermal conductivity change of EPS insulation on temperature variation through a wall assemblyMaatouk Khoukhi0Shaimaa Abdelbaqi1Ahmed Hassan2Abeer Darsaleh3Corresponding author.; College of Engineering, United Arab Emirates University, PO Box 15551, Al Ain, United Arab EmiratesCollege of Engineering, United Arab Emirates University, PO Box 15551, Al Ain, United Arab EmiratesCollege of Engineering, United Arab Emirates University, PO Box 15551, Al Ain, United Arab EmiratesCollege of Engineering, United Arab Emirates University, PO Box 15551, Al Ain, United Arab EmiratesThis paper evaluates the effect of dynamic thermal conductivity (λ) change of expanded polystyrene insulation (EPS) on temperature change through a conventional wall assembly at varying positions of the insulation within the assembly in question. According to the findings, in the case of the application of the variable λ-value of the insulation, compared to that obtained when the constant λ-value for polystyrene (EPS) insulation is adopted in the same conditions, the temperature profile through the wall assembly during the daytime is greater. In the event of applying the constant and variable λ-values, the temperature shift on the inside is seen to decline as the location of the insulation material is positioned towards the surface of the inner wall. The highest level of time lag between position 1 to 2 is over 1.3 h and around 3.47 h between position 1 and 3, and as the density level of the insulation materials rises, it leads to better transient thermal performance due to a lower temperature rise on the inside wall surface. These results suggest that considering betterment in the insulation's thermal conductivity would provide the most performant wall configuration by placing the material in the middle of the wall assembly, taking into account the change in the thermal conductivity of the insulation.http://www.sciencedirect.com/science/article/pii/S2214157X21000800Heat transferNet thermal effectDynamic thermal changeInsulation materialVariable thermal conductivity
collection DOAJ
language English
format Article
sources DOAJ
author Maatouk Khoukhi
Shaimaa Abdelbaqi
Ahmed Hassan
Abeer Darsaleh
spellingShingle Maatouk Khoukhi
Shaimaa Abdelbaqi
Ahmed Hassan
Abeer Darsaleh
Impact of dynamic thermal conductivity change of EPS insulation on temperature variation through a wall assembly
Case Studies in Thermal Engineering
Heat transfer
Net thermal effect
Dynamic thermal change
Insulation material
Variable thermal conductivity
author_facet Maatouk Khoukhi
Shaimaa Abdelbaqi
Ahmed Hassan
Abeer Darsaleh
author_sort Maatouk Khoukhi
title Impact of dynamic thermal conductivity change of EPS insulation on temperature variation through a wall assembly
title_short Impact of dynamic thermal conductivity change of EPS insulation on temperature variation through a wall assembly
title_full Impact of dynamic thermal conductivity change of EPS insulation on temperature variation through a wall assembly
title_fullStr Impact of dynamic thermal conductivity change of EPS insulation on temperature variation through a wall assembly
title_full_unstemmed Impact of dynamic thermal conductivity change of EPS insulation on temperature variation through a wall assembly
title_sort impact of dynamic thermal conductivity change of eps insulation on temperature variation through a wall assembly
publisher Elsevier
series Case Studies in Thermal Engineering
issn 2214-157X
publishDate 2021-06-01
description This paper evaluates the effect of dynamic thermal conductivity (λ) change of expanded polystyrene insulation (EPS) on temperature change through a conventional wall assembly at varying positions of the insulation within the assembly in question. According to the findings, in the case of the application of the variable λ-value of the insulation, compared to that obtained when the constant λ-value for polystyrene (EPS) insulation is adopted in the same conditions, the temperature profile through the wall assembly during the daytime is greater. In the event of applying the constant and variable λ-values, the temperature shift on the inside is seen to decline as the location of the insulation material is positioned towards the surface of the inner wall. The highest level of time lag between position 1 to 2 is over 1.3 h and around 3.47 h between position 1 and 3, and as the density level of the insulation materials rises, it leads to better transient thermal performance due to a lower temperature rise on the inside wall surface. These results suggest that considering betterment in the insulation's thermal conductivity would provide the most performant wall configuration by placing the material in the middle of the wall assembly, taking into account the change in the thermal conductivity of the insulation.
topic Heat transfer
Net thermal effect
Dynamic thermal change
Insulation material
Variable thermal conductivity
url http://www.sciencedirect.com/science/article/pii/S2214157X21000800
work_keys_str_mv AT maatoukkhoukhi impactofdynamicthermalconductivitychangeofepsinsulationontemperaturevariationthroughawallassembly
AT shaimaaabdelbaqi impactofdynamicthermalconductivitychangeofepsinsulationontemperaturevariationthroughawallassembly
AT ahmedhassan impactofdynamicthermalconductivitychangeofepsinsulationontemperaturevariationthroughawallassembly
AT abeerdarsaleh impactofdynamicthermalconductivitychangeofepsinsulationontemperaturevariationthroughawallassembly
_version_ 1721498553245761536