Heat Transport At Solid-Liquid Interfaces Between Face-Centered Cubic Lattice And Liquid Alkanes

Solid-liquid (S-L) interfaces is widely used in lubrication and coating systems, in which the heat transport is the main problem for the system. In the recent years, lubrication and coating systems have been investigated up to the molecular scale to solve the problem of heat transport due to wear an...

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Main Authors: Saleman, Abdul Rafeq, Abdul Munir, Fudhail, Mohamad Zin, Mohd Rody, Yob, Mohd Shukri, Gota, Kikugawa, Taku, Ohara
Format: Article
Language:English
Published: Penerbit Akademia Baru 2018
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Online Access:http://eprints.utem.edu.my/id/eprint/22947/2/2018%20Heat%20transport%20at%20solid-liquid%20interfaces%20between%20Face-centered%20cubic%20lattices%20and%20liquid%20alkanes-JARFMTS.pdf
http://eprints.utem.edu.my/id/eprint/22947/
http://www.akademiabaru.com/doc/ARFMTSV44_N1_P123_130.pdf
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spelling my.utem.eprints.229472021-08-27T12:15:37Z http://eprints.utem.edu.my/id/eprint/22947/ Heat Transport At Solid-Liquid Interfaces Between Face-Centered Cubic Lattice And Liquid Alkanes Saleman, Abdul Rafeq Abdul Munir, Fudhail Mohamad Zin, Mohd Rody Yob, Mohd Shukri Gota, Kikugawa Taku, Ohara T Technology (General) TA Engineering (General). Civil engineering (General) Solid-liquid (S-L) interfaces is widely used in lubrication and coating systems, in which the heat transport is the main problem for the system. In the recent years, lubrication and coating systems have been investigated up to the molecular scale to solve the problem of heat transport due to wear and friction. In molecular scale, the characteristics of heat transport are different from the conventional one. Therefore, the purpose of this study is to specifically investigate the characteristics of heat transport in the molecular scale at the S-L interfaces. The prime concern in this numerical investigation is the surface structure of solid and the type of liquid molecules. The characteristics of heat transport at the S-L interfaces are evaluated based on the temperature jump (TJ) and thermal boundary resistance (TBR) at the interfaces. It is found that the different TJs and TBRs can be observed for variation of the surface structures and the length of liquid molecules. The obtained results show that the surface structures and length of liquid molecules significantly affect the characteristics of heat transport at S-L interfaces. Penerbit Akademia Baru 2018 Article PeerReviewed text en http://eprints.utem.edu.my/id/eprint/22947/2/2018%20Heat%20transport%20at%20solid-liquid%20interfaces%20between%20Face-centered%20cubic%20lattices%20and%20liquid%20alkanes-JARFMTS.pdf Saleman, Abdul Rafeq and Abdul Munir, Fudhail and Mohamad Zin, Mohd Rody and Yob, Mohd Shukri and Gota, Kikugawa and Taku, Ohara (2018) Heat Transport At Solid-Liquid Interfaces Between Face-Centered Cubic Lattice And Liquid Alkanes. Journal Of Advanced Research In Fluid Mechanics And Thermal Sciences, 44 (1). pp. 123-130. ISSN 2289-7879 http://www.akademiabaru.com/doc/ARFMTSV44_N1_P123_130.pdf
institution Universiti Teknikal Malaysia Melaka
building UTEM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknikal Malaysia Melaka
content_source UTEM Institutional Repository
url_provider http://eprints.utem.edu.my/
language English
topic T Technology (General)
TA Engineering (General). Civil engineering (General)
spellingShingle T Technology (General)
TA Engineering (General). Civil engineering (General)
Saleman, Abdul Rafeq
Abdul Munir, Fudhail
Mohamad Zin, Mohd Rody
Yob, Mohd Shukri
Gota, Kikugawa
Taku, Ohara
Heat Transport At Solid-Liquid Interfaces Between Face-Centered Cubic Lattice And Liquid Alkanes
description Solid-liquid (S-L) interfaces is widely used in lubrication and coating systems, in which the heat transport is the main problem for the system. In the recent years, lubrication and coating systems have been investigated up to the molecular scale to solve the problem of heat transport due to wear and friction. In molecular scale, the characteristics of heat transport are different from the conventional one. Therefore, the purpose of this study is to specifically investigate the characteristics of heat transport in the molecular scale at the S-L interfaces. The prime concern in this numerical investigation is the surface structure of solid and the type of liquid molecules. The characteristics of heat transport at the S-L interfaces are evaluated based on the temperature jump (TJ) and thermal boundary resistance (TBR) at the interfaces. It is found that the different TJs and TBRs can be observed for variation of the surface structures and the length of liquid molecules. The obtained results show that the surface structures and length of liquid molecules significantly affect the characteristics of heat transport at S-L interfaces.
format Article
author Saleman, Abdul Rafeq
Abdul Munir, Fudhail
Mohamad Zin, Mohd Rody
Yob, Mohd Shukri
Gota, Kikugawa
Taku, Ohara
author_facet Saleman, Abdul Rafeq
Abdul Munir, Fudhail
Mohamad Zin, Mohd Rody
Yob, Mohd Shukri
Gota, Kikugawa
Taku, Ohara
author_sort Saleman, Abdul Rafeq
title Heat Transport At Solid-Liquid Interfaces Between Face-Centered Cubic Lattice And Liquid Alkanes
title_short Heat Transport At Solid-Liquid Interfaces Between Face-Centered Cubic Lattice And Liquid Alkanes
title_full Heat Transport At Solid-Liquid Interfaces Between Face-Centered Cubic Lattice And Liquid Alkanes
title_fullStr Heat Transport At Solid-Liquid Interfaces Between Face-Centered Cubic Lattice And Liquid Alkanes
title_full_unstemmed Heat Transport At Solid-Liquid Interfaces Between Face-Centered Cubic Lattice And Liquid Alkanes
title_sort heat transport at solid-liquid interfaces between face-centered cubic lattice and liquid alkanes
publisher Penerbit Akademia Baru
publishDate 2018
url http://eprints.utem.edu.my/id/eprint/22947/2/2018%20Heat%20transport%20at%20solid-liquid%20interfaces%20between%20Face-centered%20cubic%20lattices%20and%20liquid%20alkanes-JARFMTS.pdf
http://eprints.utem.edu.my/id/eprint/22947/
http://www.akademiabaru.com/doc/ARFMTSV44_N1_P123_130.pdf
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score 13.211869