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On the Effect of Graphene Nanoplatelets on Water-Graphene Nanofluid Thermal Conductivity, Viscosity, and Heat Transfer Under Laminar External Flow Conditions

机译:层流外流条件下石墨烯纳米片对水-石墨烯纳米流体导热系数,粘度和传热的影响

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摘要

Experiments were conducted with graphene nanoplatelets (GNP) to investigate the relative benefit of the thermal conductivity increase in relationship to the potential detriment of increased viscosity. The maximum enhancement ratio for GNP nanofluid thermal conductivity over water was determined to be 1.43 at a volume fraction of 0.014. Based on GNP aspect ratios, the differential effective medium model is shown to describe the experimental results of this study when using a fitted interfacial resistance value of 6 × 10 ~( −8 ) m ~( 2 ) K W ~( −1 ) . The viscosity model of Einstein provided close agreement between measured and predicted values when the effects of temperature were included and the intrinsic viscosity model term was adjusted to a value of 2151 representative for GNP. Heat transfer in external flows in laminar regime is predicted to decrease for GNP nanofluids when compared to water alone.
机译:用石墨烯纳米片(GNP)进行了实验,以研究热导率增加与粘度增加的潜在危害之间的相对利益。 GNP纳米流体在水中的热导率的最大增强比被确定为1.43,体积分数为0.014。基于GNP纵横比,当使用拟合的界面电阻值为6×10〜(-8)m〜(2)K W〜(-1)时,显示了差分有效介质模型来描述本研究的实验结果。当包括温度影响并将特性粘度模型项调整为代表GNP的值2151时,爱因斯坦的粘度模型在测量值和预测值之间提供了紧密的一致性。与单独的水相比,对于GNP纳米流体,层流形式的外部流中的热传递预计会减少。

著录项

  • 来源
    《Journal of Heat Transfer》 |2018年第6期|064501.1-064501.4|共4页
  • 作者单位

    Civil and Environmental Engineering,University of Texas-San Antonio,One UTSA Circle,San Antonio, TX 78249;

    Civil and Environmental Engineering,University of Texas-San Antonio,One UTSA Circle,San Antonio, TX 78249;

    Mechanical Engineering,University of Hartford,200 Bloomfield Avenue,West Hartford, CT 06117;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Flow (Dynamics); Heat transfer; Viscosity; Thermal conductivity; Graphene; Nanofluids; Water;

    机译:流动(动力学);传热;粘度;导热系数;石墨烯;纳米流体;水;

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