Heat transfer and fouling deposition investigation on the titanium coated heat exchanger surface

Calcium carbonate; Corrosion resistance; Corrosion resistant coatings; Fouling; Heat resistance; Heat transfer performance; Metal coatings; Physical vapor deposition; Textures; Coated heat exchanger; Coating material; Enhanced heat transfer; Fouling depositions; Fouling mitigation; Heat exchanger pe...

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Main Authors: Oon C.S., Kazi S.N., Hakimin M.A., Abdelrazek A.H., Mallah A.R., Low F.W., Tiong S.K., Badruddin I.A., Kamanger S.
Other Authors: 55332679600
Format: Article
Published: Elsevier B.V. 2023
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spelling my.uniten.dspace-253722023-05-29T16:08:39Z Heat transfer and fouling deposition investigation on the titanium coated heat exchanger surface Oon C.S. Kazi S.N. Hakimin M.A. Abdelrazek A.H. Mallah A.R. Low F.W. Tiong S.K. Badruddin I.A. Kamanger S. 55332679600 7003406290 57218122083 57195593716 57203285563 56513524700 15128307800 12544753000 57218127676 Calcium carbonate; Corrosion resistance; Corrosion resistant coatings; Fouling; Heat resistance; Heat transfer performance; Metal coatings; Physical vapor deposition; Textures; Coated heat exchanger; Coating material; Enhanced heat transfer; Fouling depositions; Fouling mitigation; Heat exchanger performance; Heat transfer resistance; Surface textures; Heat exchangers; calcium carbonate; titanium; Article; biofouling; coating (procedure); conductance; corrosion; flow rate; heat transfer; microscopy; physical vapor deposition Fouling is the undesired deposition on heat exchanger surfaces which enhance heat transfer resistances and retard heat exchanger performance. This paper investigates fouling mitigation of calcium carbonate by the application of coatings on SS316L heat exchanger. Titanium (Ti) was selected as coating material due to its high resistance to corrosion and good surface adhesion. Physical vapor deposition method was adopted to coat Ti on the SS316L surface. Heat transfer investigation at different flow rates were conducted to observe the effect of coating and then fouling experiments were carried out to investigate the deposition of Calcium Carbonate to the coated and uncoated surfaces. The test section was taken under microscopic investigation to study the surface texture before and after the fouling effect. It was observed that the Ti coated SS316L surface of heat exchanger surface experienced less corrosion, enhanced heat transfer and reduced fouling deposition. � 2020 Elsevier B.V. Final 2023-05-29T08:08:39Z 2023-05-29T08:08:39Z 2020 Article 10.1016/j.powtec.2020.07.010 2-s2.0-85087991544 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85087991544&doi=10.1016%2fj.powtec.2020.07.010&partnerID=40&md5=acde4395314be27f58deb8ce44cc41b4 https://irepository.uniten.edu.my/handle/123456789/25372 373 671 680 Elsevier B.V. Scopus
institution Universiti Tenaga Nasional
building UNITEN Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
url_provider http://dspace.uniten.edu.my/
description Calcium carbonate; Corrosion resistance; Corrosion resistant coatings; Fouling; Heat resistance; Heat transfer performance; Metal coatings; Physical vapor deposition; Textures; Coated heat exchanger; Coating material; Enhanced heat transfer; Fouling depositions; Fouling mitigation; Heat exchanger performance; Heat transfer resistance; Surface textures; Heat exchangers; calcium carbonate; titanium; Article; biofouling; coating (procedure); conductance; corrosion; flow rate; heat transfer; microscopy; physical vapor deposition
author2 55332679600
author_facet 55332679600
Oon C.S.
Kazi S.N.
Hakimin M.A.
Abdelrazek A.H.
Mallah A.R.
Low F.W.
Tiong S.K.
Badruddin I.A.
Kamanger S.
format Article
author Oon C.S.
Kazi S.N.
Hakimin M.A.
Abdelrazek A.H.
Mallah A.R.
Low F.W.
Tiong S.K.
Badruddin I.A.
Kamanger S.
spellingShingle Oon C.S.
Kazi S.N.
Hakimin M.A.
Abdelrazek A.H.
Mallah A.R.
Low F.W.
Tiong S.K.
Badruddin I.A.
Kamanger S.
Heat transfer and fouling deposition investigation on the titanium coated heat exchanger surface
author_sort Oon C.S.
title Heat transfer and fouling deposition investigation on the titanium coated heat exchanger surface
title_short Heat transfer and fouling deposition investigation on the titanium coated heat exchanger surface
title_full Heat transfer and fouling deposition investigation on the titanium coated heat exchanger surface
title_fullStr Heat transfer and fouling deposition investigation on the titanium coated heat exchanger surface
title_full_unstemmed Heat transfer and fouling deposition investigation on the titanium coated heat exchanger surface
title_sort heat transfer and fouling deposition investigation on the titanium coated heat exchanger surface
publisher Elsevier B.V.
publishDate 2023
_version_ 1806428231082967040
score 13.214268