Heat transfer performance of single and hybrid water-based nanofluids (Al2O3 and SiO2) in nucleate pool boiling / (Record no. 96761)

MARC details
000 -LEADER
fixed length control field 05040ntm a2200361 i 4500
003 - CONTROL NUMBER IDENTIFIER
control field MY-KuUP
005 - DATE AND TIME OF LATEST TRANSACTION
control field 20251125110018.0
006 - FIXED-LENGTH DATA ELEMENTS--ADDITIONAL MATERIAL CHARACTERISTICS
fixed length control field t||||fr|||| 000 0
008 - FIXED-LENGTH DATA ELEMENTS--GENERAL INFORMATION
fixed length control field 220223s2020 my a|||fr|||| 000 0 eng d
020 ## - INTERNATIONAL STANDARD BOOK NUMBER
International Standard Book Number THE0009120(Local)
Qualifying information hardback
040 ## - CATALOGING SOURCE
Original cataloging agency UMP
Language of cataloging eng
Transcribing agency UMP
Description conventions rda
090 ## - LOCALLY ASSIGNED LC-TYPE CALL NUMBER (OCLC); LOCAL CALL NUMBER (RLIN)
Classification number (OCLC) (R) ; Classification number, CALL (RLIN) (NR) FTKMA .H33 2020 r Thesis
100 1# - MAIN ENTRY--PERSONAL NAME
Personal name Muhamad Hadie Aizzat Asli,
Relator term author.
245 10 - TITLE STATEMENT
Title Heat transfer performance of single and hybrid water-based nanofluids (Al2O3 and SiO2) in nucleate pool boiling /
Statement of responsibility, etc. Muhamad Hadie Aizzat Asli
264 #1 - PRODUCTION, PUBLICATION, DISTRIBUTION, MANUFACTURE, AND COPYRIGHT NOTICE
Place of production, publication, distribution, manufacture Kuantan, Pahang :
Name of producer, publisher, distributor, manufacturer UMP,
Date of production, publication, distribution, manufacture, or copyright notice 2020
264 #4 - PRODUCTION, PUBLICATION, DISTRIBUTION, MANUFACTURE, AND COPYRIGHT NOTICE
Date of production, publication, distribution, manufacture, or copyright notice © 2020
300 ## - PHYSICAL DESCRIPTION
Extent xiv, 87 pages :
Other physical details illustrations (some color) ;
Dimensions 30 cm. +
Accompanying material 1 CD ROM
336 ## - CONTENT TYPE
Content type term text
Source rdacontent
336 ## - CONTENT TYPE
Content type term text
Source rdacontent
337 ## - MEDIA TYPE
Media type term unmediated
Source rdamedia
337 ## - MEDIA TYPE
Media type term computer
Source rdamedia
338 ## - CARRIER TYPE
Carrier type term volume
Source rdacarrier
338 ## - CARRIER TYPE
Carrier type term computer disc
Source rdacarrier
347 ## - DIGITAL FILE CHARACTERISTICS
File type text file
Encoding format PDF
Source rda
500 ## - GENERAL NOTE
General note Faculty of Mechanical and Automotive Engineering Technology
502 ## - DISSERTATION NOTE
Dissertation note Thesis (Master of Science) -- Universiti Malaysia Pahang – 2020
504 ## - BIBLIOGRAPHY, ETC. NOTE
Bibliography, etc. note Includes bibliographical references
520 3# - SUMMARY, ETC.
Summary, etc. Enhancement of heat transfer performance in nucleate boiling has become one of the prominent topics due to the demand of high cooling density in industry applications. Recently, various types of nanofluids have been researched in terms of their cooling performance in the multiphase system. For instance, Al2O3 nanofluids gave a completely different Heat Transfer Coefficient (HTC) performance compared to SiO2 nanofluids in various concentration levels. The reasons of the inconsistencies are still elusive. In addition, the HTC performances of those single nanofluids in steady state conditions have not been well reported in literature. The present work aims to evaluate the HTC performance, the steady state conditions, and the relation between surface properties towards the HTC of Al2O3 and SiO2 nanofluids in saturated pool boiling of single and hybrid Al2O3/SiO2 water-based nanofluids. Two types of single nanofluid dispersions (Al2O3 and SiO2) were prepared. Their hybrid nanofluids were mixed in different volume concentration ratios of 0:100, 25:75, 50:50, 75:25, and 100:0 percent to achieve three final concentrations of C = 0.001 vol. %, 0.01 vol. %, 0.025 vol. %. Later, experiments were conducted to obtain the heat transfer coefficients (HTCs) and steady state conditions of the HTC within a prescribed time, as well as evaluation of surface roughness properties. The present work demonstrated the HTC values for single and hybrid nanofluids in a series of time variation of wall superheat, ΔTw. Next, considering the significance of the clarification of heat transfer steadiness in the system , experiment for the quasi steady state was extended up to 5 hours to reveal the dependencies of HTC over time in single and hybrid nanofluids with low concentration C = 0.001 vol. %. Finally, due to the occurrence of nanoparticle deposition in the present experiment, surface roughness measurements were conducted to investigate the surface structure evolution with respect to the boiling time in nanofluids using SiO2 and Al2O3 nanofluids of low concentration C = 0.001 vol. %. The HTC results were found to enhance considerably for Al2O3 and on the contrary, deteriorate for SiO2 nanofluids. Notably, for the hybrid nanofluids (Al2O3/SiO2: 50/50 vol. %), the HTCs were dramatically enhanced at the initial stage after 5 seconds, whilst slowly deteriorated once the time variation increased up to ΔTw = 16 °C, especially in a higher ratio of SiO2 nanofluids. In addition, it should be noted that the HTC performance of hybrid nanofluids was found to be in between those of Al2O3 and SiO2 in the time variation of 1 hour. For the single and hybrid nanofluids in low concentration, SiO2 nanofluids achieved the steady state conditions after 5 hours at 17 °C except for single Al2O3 nanofluids which did not achieve steady state condition even after 5 hours with a slight gradual increase with respect to the time variation of wall superheat (ΔTw). Meanwhile, the surface roughness of heater surface, Ra values were 1.7995 µm for Al2O3 and 1.7507 µm for SiO2 after boiling in nanofluids. However, the HTC values were different where they increased in Al2O3 nanofluids but deteriorated for SiO2 nanofluids. The surface roughness results of heater surface for both nanofluids were nearly the same but different HTC performances were reported. Therefore, surface roughness was not a significant factor to the HTC performance in the present work.
610 20 - SUBJECT ADDED ENTRY--CORPORATE NAME
Corporate name or jurisdiction name as entry element Faculty of Mechanical and Automotive Engineering Technology
General subdivision Dissertations
650 #0 - SUBJECT ADDED ENTRY--TOPICAL TERM
Topical term or geographic name entry element Universities and colleges
General subdivision Dissertations
650 #0 - SUBJECT ADDED ENTRY--TOPICAL TERM
Topical term or geographic name entry element Theses
942 ## - ADDED ENTRY ELEMENTS (KOHA)
Source of classification or shelving scheme Library of Congress Classification
Koha item type Thesis
Holdings
Withdrawn status Lost status Source of classification or shelving scheme Damaged status Not for loan Collection Home library Current library Date acquired Total checkouts Full call number Barcode Date last seen Copy number Price effective from Koha item type
  Not lost Library of Congress Classification     Reference UMPLIB PEKAN UMPLIB PEKAN 23/02/2022   FTKMA .H33 2020 r Thesis T000001329 09/05/2022 1 23/02/2022 Thesis
  Not lost Library of Congress Classification     Reference UMPLIB PEKAN UMPLIB PEKAN 23/02/2022   CD12831 T000001330 04/07/2022 1 23/02/2022 Thesis

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