Title : Experimental Investigations on Pool Boiling Heat Transfer over External Micro Finned Cylindrical Surfaces

Type of Material: Thesis
Title: Experimental Investigations on Pool Boiling Heat Transfer over External Micro Finned Cylindrical Surfaces
Researcher: Shah, Balkrushna
Guide: Lakhera V J
Department: Institute of Technology
Publisher: Nirma University, Ahmedabad
Place: Ahmedabad
Year: 2024
Language: English
Subject: Cylindrical Surfaces
Engineering
Engineering and Technology
Engineering Mechanical
Pool Boiling
Mechanical engineering
Engineering and Technology
Dissertation/Thesis Note: PhD; Institute of Technology, Nirma University, Ahmedabad, Ahmedabad; 2024
Fulltext: Shodhganga

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035__|a(IN-AhILN)th_456585
040__|aNIRU_382481|dIN-AhILN
041__|aeng
100__|aShah, Balkrushna|eResearcher
110__|aInstitute of Technology|bNirma University, Ahmedabad|dAhmedabad|ein|0U-0146
245__|aExperimental Investigations on Pool Boiling Heat Transfer over External Micro Finned Cylindrical Surfaces
260__|aAhmedabad|bNirma University, Ahmedabad|c2024
300__|dDVD
502__|cInstitute of Technology, Nirma University, Ahmedabad, Ahmedabad|d2024|bPhD
518__|d2024|oDate of Award
518__|oDate of Registration|d2016
520__|aThe pool boiling heat transfer is preferred over the single-phase heat transfer when a large amount of energy transmission is needed in a small space. Pool boiling results in high heat transfer due to involvement of liquid to vapour phase change. The pool boiling process is widely used for high heat removal in various engineering applications such as in HVAC (Heating, Ventilation and Air Conditioning) industry, steam generators, nuclear power reactors in power plants, electronic components cooling, etc. Based on the literature review, it was concluded that further investigations related to pool boiling over plain and micro-finned cylindrical surfaces at different pressures and bubble departure diameter needs to be undertaken. Also, it was concluded that though numerous studies related to nucleate boiling over enhanced surfaces were carried out in past and correlations were suggested for the prediction of BHTC, the available correlations were applicable for limited surface characteristics and heat flux range
650__|aMechanical engineering|2UGC
650__|aEngineering and Technology|2AIU
653__|aCylindrical Surfaces
653__|aEngineering
653__|aEngineering and Technology
653__|aEngineering Mechanical
653__|aPool Boiling
700__|eGuide|aLakhera V J
856__|uhttp://shodhganga.inflibnet.ac.in/handle/10603/544010|yShodhganga
905__|afromsg

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