Title : Experimental investigation of heat Transfer and friction factor Characteristics of double pipe heat Exchanger using nanofluids

Type of Material: Thesis
Title: Experimental investigation of heat Transfer and friction factor Characteristics of double pipe heat Exchanger using nanofluids
Researcher: MOHANKUMAR, T
Guide: Dr. K. RAJAN
Department: Department of Mechanical Engineering
Publisher: Bharath University, Chennai
Place: Chennai
Year: 2021
Language: English
Subject: Engineering and Technology
Engineering Mechanical
Engineering
Mechanical engineering
Engineering and Technology
Dissertation/Thesis Note: PhD; Department of Mechanical Engineering, Bharath University, Chennai, Chennai; 2021; D14ME501
Fulltext: Shodhganga

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035__|a(IN-AhILN)th_454923
040__|aBHAU_600073|dIN-AhILN
041__|aeng
100__|aMOHANKUMAR, T|eResearcher
110__|aDepartment of Mechanical Engineering|bBharath University, Chennai|dChennai|ein|0U-0446
245__|aExperimental investigation of heat Transfer and friction factor Characteristics of double pipe heat Exchanger using nanofluids
260__|aChennai|bBharath University, Chennai|c2021
300__|dDVD
502__|bPhD|cDepartment of Mechanical Engineering, Bharath University, Chennai, Chennai|d2021|oD14ME501
520__|aIn the present age of industrialization, heat exchangers play a vital role in the energy consumption. They are widely used in the mechanical and chemical industries. In order to minimize the energy consumption and to promote thermal conductivity, industries realize the need for using nanofluids and nanoparticles instead of conventional fluids in heat exchangers. Many researchers insist on the application of nanofluids for improving heat transfer characteristics of heat exchangers. The current research focuses mainly on heat exchanger characteristics of laminar flow inside the circular tube. The heat exchanger with plain twisted tapes and helical coil inserts are used to promote the heat transfer. In the place of water based liquids, nanofluids with PTT and helical coil inserts are strongly recommended for accelerating the heat transfer process. The Al2O3 with PTT provides better heat transfer performance under laminar conditions in the areas of fluid motion. It is stressed in this dissertation that nanofl
650__|aMechanical engineering|2UGC
650__|aEngineering and Technology|2AIU
653__|aEngineering and Technology
653__|aEngineering Mechanical
653__|aEngineering
700__|aDr. K. RAJAN|eGuide
856__|uhttp://shodhganga.inflibnet.ac.in/handle/10603/340919|yShodhganga
905__|afromsg

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