ub.xmlui.mirage2.page-structure.muninLogoub.xmlui.mirage2.page-structure.openResearchArchiveLogo
    • EnglishEnglish
    • norsknorsk
  • Velg spraakEnglish 
    • EnglishEnglish
    • norsknorsk
  • Administration/UB
View Item 
  •   Home
  • Fakultet for ingeniørvitenskap og teknologi
  • Institutt for automasjon og prosessteknologi
  • Artikler, rapporter og annet (automasjon og prosessteknologi)
  • View Item
  •   Home
  • Fakultet for ingeniørvitenskap og teknologi
  • Institutt for automasjon og prosessteknologi
  • Artikler, rapporter og annet (automasjon og prosessteknologi)
  • View Item
JavaScript is disabled for your browser. Some features of this site may not work without it.

Determining Thermal Properties of Polyurethane by Solving the Heat Equation and IR Imaging

Permanent link
https://hdl.handle.net/10037/25602
DOI
https://doi.org/10.21152/1750-9548.16.2.187
Thumbnail
View/Open
article.pdf (600.9Kb)
Published version (PDF)
Date
2022-06-27
Type
Journal article
Tidsskriftartikkel
Peer reviewed

Author
Eidesen, Hans-Kristian; Andleeb, Zahra; Khawaja, Hassan; Moatamedi, Mojtaba
Abstract
All materials have different and unique thermal properties that determine how the temperature changes when a material is subjected to a temperature difference. This study was intended to investigate the thermal properties of a polymer called Polyurethane, focusing on anti-seepage and anti-abrasion polyurethane. The thermal conductivity and heat transfer coefficient of cold polyurethane specimens have been calculated by capturing the infrared signature using a FLIR T1030sc Infrared camera and comparing the results with simulated results. The simulations were carried out in MATLAB®, and the solution is based on the Heat equation. This paper describes the driving mechanisms behind the Heat equation and how the approximated solution to the Heat equation is obtained by discretizing through a forward-time central-space (FTCS) finite-difference method. The results reveal that the heat transfer coefficient for anti-abrasion Polyurethane is almost four times that for anti-seepage Polyurethane. The thermal conductivity for the respective has a difference of a factor of two. A good agreement between the experimental and the numerical study was acheived. This study is helpful for the potential use of polyurethane material in Arctic regions either as a coating material for pipes or as a sealent in the oil and gas industry.
Publisher
The International Society of Multiphysics
Citation
Eidesen, Andleeb Z, Khawaja HA, Moatamedi M. Determining Thermal Properties of Polyurethane by Solving the Heat Equation and IR Imaging. The International Journal of Multiphysics. 2022;16(2):187-202
Metadata
Show full item record
Collections
  • Artikler, rapporter og annet (automasjon og prosessteknologi) [172]
Copyright 2022 The Author(s)

Browse

Browse all of MuninCommunities & CollectionsAuthor listTitlesBy Issue DateBrowse this CollectionAuthor listTitlesBy Issue Date
Login

Statistics

View Usage Statistics
UiT

Munin is powered by DSpace

UiT The Arctic University of Norway
The University Library
uit.no/ub - munin@ub.uit.no

Accessibility statement (Norwegian only)