Experimental study on heat transfer augmentation of graphene based ferrofluids in presence of magnetic field

被引:60
|
作者
Sadeghinezhad, Emad [1 ]
Mehrali, Mohammad [2 ,3 ]
Akhiani, Amir Reza [2 ,3 ]
Latibari, Sara Tahan [4 ]
Dolatshahi-Pirouz, Alireza [5 ]
Metselaar, Hendrik Simon Cornelis [2 ,3 ]
Mehrali, Mehdi [5 ]
机构
[1] Sharif Univ Technol, Dept Mech Engn, Tehran, Iran
[2] Univ Malaya, Dept Mech Engn, Kuala Lumpur 50603, Malaysia
[3] Univ Malaya, Adv Mat Res Ctr, Kuala Lumpur 50603, Malaysia
[4] Tarbiat Modares Univ, Dept Chem Engn, Tehran, Iran
[5] Tech Univ Denmark, DTU Nanotech, Ctr Nanomed & Theranost, DK-2800 Lyngby, Region Hovedsta, Denmark
关键词
Graphene; Magnetic nanofluid; Convective heat transfer; Magnetic field; NANOTUBE-BASED NANOFLUIDS; TURBULENT-FLOW CONDITIONS; THERMAL-ENERGY STORAGE; NANOPLATELETS NANOFLUIDS; CATALYTIC PERFORMANCE; TRANSFER ENHANCEMENT; AQUEOUS NANOFLUIDS; ENTROPY GENERATION; TANNIC-ACID; CONDUCTIVITY;
D O I
10.1016/j.applthermaleng.2016.11.199
中图分类号
O414.1 [热力学];
学科分类号
摘要
The effect of a permanent magnetic field on the heat transfer characteristics of hybrid graphene-magnetite nanofluids (hybrid nanofluid) under forced laminar flow was experimentally investigated. For this purpose, a reduced graphene oxide-Fe3O4 was synthesized by using two-dimensional (2D) graphene oxide, iron salts and tannic acid as the reductant and stabilizer. Graphene sheets acted as the supporting materials to enhance the stability and thermal properties of magnetite nanoparticles. The thermo-physical and magnetic properties of this hybrid nanofluid have been widely characterized and it shows that the thermal conductivity increased up to 11%. The hybrid nanofluid behaves as a Newtonian fluid with liquid like behavior with superparamagnetic properties as was evident from its magnetic saturation value at 45.9 emit. Moreover, the experimental heat-transfer results indicated that the heat transfer enhancement of the hybrid nanofluid compared to the control fluid (distilled water) was negligible when no magnetic field was applied. Additionally, the convective heat transfer was significantly improved under the influence of a magnetic field with a maximum enhancement of 82% in terms of the convective heat transfer properties of the hybrid nanofluid. (C) 2016 Elsevier Ltd. All rights reserved.
引用
收藏
页码:415 / 427
页数:13
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