Characterization of heat transfer on concentric tube heat exchanger using ethylene glycol/TiO2 nanofluid

This study aims to determine the effect of temperature and volume fraction on heat transfer rate and heat transfer coefficient on concentric tube heat exhanger with nano ethylene glycol / TiO2 fluid. From the results of tests and analyzes that have been done, it is obtained the best temperature and...

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Veröffentlicht in:IOP conference series. Materials Science and Engineering 2021-02, Vol.1034 (1)
Hauptverfasser: Herry Irawansyah, Ghofur, Abdul, Subagyo, Rachmat, Tamjidillah, Mastiadi, Bagus Harits Pratama, Suroso, Bekti, Budi Santoso Wibowo
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container_title IOP conference series. Materials Science and Engineering
container_volume 1034
creator Herry Irawansyah
Ghofur, Abdul
Subagyo, Rachmat
Tamjidillah, Mastiadi
Bagus Harits Pratama
Suroso, Bekti
Budi Santoso Wibowo
description This study aims to determine the effect of temperature and volume fraction on heat transfer rate and heat transfer coefficient on concentric tube heat exhanger with nano ethylene glycol / TiO2 fluid. From the results of tests and analyzes that have been done, it is obtained the best temperature and volume fraction that supports the rate of heat transfer. The best heat transfer rate of 22,430.25 W is done at the condition of the 0.03% TiO2 Volume Fraction and at a temperature of 100 ° C. The best heat transfer coefficient occurs at a volume fraction of 0.03% and at a temperature of 100 ° C. It can be concluded that, TiO2 will increase the heat capacity and heat conductivity of the base fluid which will optimize the performance of the fluid.
doi_str_mv 10.1088/1757-899X/1034/1/012045
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subjects Ethylene glycol
Heat transfer
Heat transfer coefficients
Nanofluids
Temperature
Temperature effects
Thermal conductivity
Titanium dioxide
Tube heat exchangers
title Characterization of heat transfer on concentric tube heat exchanger using ethylene glycol/TiO2 nanofluid
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