Please use this identifier to cite or link to this item: https://hdl.handle.net/2440/129009
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Type: Journal article
Title: Performance index improvement of a double-pipe cooler with MgO/water-ethylene glycol (50:50) nano-suspension
Author: Arya, H.
Sarafraz, M.M.
Pourmehran, O.
Arjomandi, M.
Citation: Propulsion and Power Research, 2020; 9(1):75-86
Publisher: Elsevier; Beihang University
Issue Date: 2020
ISSN: 2212-540X
2212-540X
Statement of
Responsibility: 
H. Arya, M.M. Sarafraz, O. Pourmehran, M. Arjomandi
Abstract: A series of tests was conducted to unlock the potential application of MgO/water-EG (ethylene glycol) nanofluids (NF) in a double-pipe heat exchanger (HEX). The overall heat transfer coefficient (HTC), the inlet temperature of the working fluid, the fluid pressure drop (FPD), friction factor (FF) and the hydraulic performance index of the NF within the HEX were experimentally measured. Fouling of nanoparticles (NPs) within the Hex was also studied and modelled using asymptotic particulate fouling model. Results showed that MgO NPs can enhance the HTC by 39% at Re=10,500 and wt.% = 0.3 in the turbulent regime. Also, the presence of MgO NPs augmented the FF and the FPD values. The former was enhanced 33.8%, while the latter was augmented by 37% both at wt.% = 0.3 and at Reynolds number = 10,500. Results also revealed that the formation of porous particulate fouling layer on the internal wall of the inner tube creates a fouling thermal resistance which changes asymptotically with time. Overall, MgO/water-ethylene glycol shows a great potential to be used as a coolant within a HEX.
Keywords: Forced convective heat transfer; particulate fouling; heat exchanger; fouling; nanofluid
Rights: © 2020 Beihang University. Production and hosting by Elsevier B.V. on behalf of KeAi. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
DOI: 10.1016/j.jppr.2019.05.001
Published version: http://dx.doi.org/10.1016/j.jppr.2019.05.001
Appears in Collections:Aurora harvest 8
Mechanical Engineering publications

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