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Title: | Experimental and numerical investigations on heat transfer and friction loss of functionalized GNP nanofluids |
Authors: | Solangi, Khalid Hussain Sharif, Safian Sadiq, Ibrahim Ogu Hisam, Muhammad Juzaili |
Keywords: | Heat transfer, nanofluids, copper, turbulent flow, graphene nanoplatelet, propylene glycol. |
Issue Date: | Aug-2019 |
Publisher: | IAEME Publishers |
Citation: | Solangi, K. H., Sharif, S., Ogu Sadiq, I., & Hisam, M. J. (2019). |
Series/Report no.: | Volume 10;No. 8 |
Abstract: | Heat transfer and friction loss characteristics of functionalized graphene nanoplatelet-based water (GNP-water) nanofluids are analyzed numerically and experimentally. A horizontal copper test section of 4 mm in diameter was used to run the experiment in close conduit flow. In the numerical analysis for two-phase flow mixture model, the velocity of nanofluids and profile temperature were assumed and in total 50 simulation cases, 2 different heat fluxes, 4 concentrations at Re range of 3900–11,700 were investigated. In the results, significant enhancement was obtained in the thermal conductivity which increased up to 32%. After validation of the results, the highest enhancement in heat transfer coefficient and friction factor was obtained up to 119% and 10.2% by loading 0.1wt% of GNP-water nanofluids. It was perceived that heat transfer coefficient increases with increasing concentration of GNP-water nanofluids and flow Reynolds number (Re). The numerical and experimental results showed the good agreement with a maximum error of less than 4%. The experimental and numerical results reveal that the GNP-water can function as working fluids in heat transfer applications and can provide good alternatives to conventional working fluids in the thermal fluid systems. |
URI: | http://repository.futminna.edu.ng:8080/jspui/handle/123456789/16889 |
ISSN: | ISSN Online: 0976-6359 ISSN Print: 0976-6340 |
Appears in Collections: | Mechanical Engineering |
Files in This Item:
File | Description | Size | Format | |
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EXPERIMENTAL AND NUMERICAL INVESTIGATIONS ON HEAT TRANSFER & FRICTION LOSS OF FUNCTIONALIZED GNP NANOFLUID.pdf | 812.03 kB | Adobe PDF | View/Open |
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