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Measurement and modeling of thermal conductivity of graphene nanoplatelet water and ethylene glycol base nanofluids

机译:石墨烯纳米血小板水和乙二醇基纳米流体导热系数的测量和建模

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Three graphene nanoplatelet (GNP) nanofluids with different base fluids, viz. ethylene glycol (EG), deionized water (DW), and EG/DW (1:1) were prepared and characterized. The stability of GNP nanofluid was analyzed. Thermal conductivity was tested over the temperature range -20 degrees C to 50 degrees C. A new model is proposed for the effective thermal conductivity of the GNP nanofluid considering Brownian motion, length, thickness, average flatness ratio and interfacial thermal resistance of GNP, and it was compared with Maxwell, H-C and Chu models. The maximum thermal conductivity enhancement of EG, EG/DW (1:1) and DW based nanofluid is 4.6%, 18% and 6.8% respectively. Interestingly, the thermal conductivity of EG based GNP nanofluids does not show appreciable enhancement. The thermal conductivity enhancement of EG/DW (1:1) GNP nanofluid is greater than that of pure EG GNP nanofluid. In particular, the enhancement ratio at subzero temperature is larger than that at higher temperatures. The new model and Chu model are in agreement with the experimental data, and the new model is more rational for the GNP nanofluids. The new model shows that the influence of Brownian motion of GNP on thermal conductivity is significant at higher temperatures, higher concentration and smaller nanoparticles. (C) 2018 Elsevier Ltd. All rights reserved.
机译:具有不同基础流体的三种石墨烯纳米血小板(GNP)纳米流体,即。制备并表征了乙二醇(EG),去离子水(DW)和EG / DW(1:1)。分析了GNP纳米流体的稳定性。在-20摄氏度到50摄氏度的温度范围内测试了热导率。考虑到布朗运动,长度,厚度,平均平面度比和GNP界面热阻,提出了一种新的GNP纳米流体有效热导率模型。并与Maxwell,HC和Chu模型进行了比较。 EG,EG / DW(1:1)和DW基纳米流体的最大导热系数分别为4.6%,18%和6.8%。有趣的是,基于EG的GNP纳米流体的热导率没有显示出明显的提高。 EG / DW(1:1)GNP纳米流体的热导率增强大于纯EG GNP纳米流体的热导率增强。特别地,低于零温度的增强率大于较高温度的增强率。新模型和Chu模型与实验数据吻合,新模型对GNP纳米流体更为合理。新模型表明,在较高的温度,较高的浓度和较小的纳米颗粒下,GNP的布朗运动对导热系数的影响显着。 (C)2018 Elsevier Ltd.保留所有权利。

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