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Effect of Ultralow Concentrated Reduced Graphene Oxide Nanofluid on Radiator Performance

机译:超级浓缩石墨烯氧化物纳米流体对散热器性能的影响

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摘要

Nanocoolants are engineered colloidal suspensions of nanoparticles in a conventional coolant (water-ethylene glycol). Use of metals and metallic oxide nanofluids at concentrations greater than 0.01 vol % has been studied in greater detail compared to function-alized graphene nanofluids. In the present work, an experimental investigation is carried out on an automobile radiator by changing the conventional coolant to reduced graphene oxide (RGO) nanocoolant. The present study focuses on the effect of ultralow nanopar-ticle concentration (0.002-0.006 vol%), Reynolds number of hot coolant (80-170), Reynolds number of air (210-270), and inlet temperature of hot coolant (40°C and 60°C). The effect of these parameters on the performance of the radiator is measured in terms of convective heat transfer coefficient (CHTC), Nusselt number, friction factor, and effectiveness. Results indicate that at 0.006 vol % concentration, there is a maximum increase of 100.5% and 111%, respectively, in CHTC and effectiveness, besides a reduction in friction factor. RGO nanocoolant offers great scope for reducing the radiator size and increasing its performance.
机译:纳米烃是常规冷却剂(水 - 乙二醇)中纳米颗粒的工程化胶体悬浮液。与功能溶液的石墨烯纳米流体相比,已经更详细地研究了在大于0.01体积%的浓度下使用金属和金属氧化物纳米流体。在本作工作中,通过将常规冷却剂改变为还原的石墨烯(RGO)纳米金属剂,在汽车散热器上进行实验研究。本研究重点介绍了超级纳米柱浓度(0.002-0.006 Vol%)的影响,雷诺数的热冷却剂(80-170),雷诺空气数(210-270)和热冷却剂的入口温度(40 °C和60°C)。这些参数对散热器性能的影响是根据对流传热系数(CHTC),露珠数,摩擦因子和有效性的。结果表明,除摩擦因子的降低之外,浓度为0.006体积%,最大增加为100.5%和111%,分别以CHTC和有效性。 Rgo NanoCoolant提供了减少散热器尺寸并提高其性能的范围。

著录项

  • 来源
    《Journal of Heat Transfer》 |2021年第8期|082501.1-082501.10|共10页
  • 作者单位

    Process Modelling Research Laboratory (PMR Lab) Department of Mechanical Engineering PES University 100 Feet Ring Road BSK Ⅲ Stage Bangalore 560085 India;

    Process Modelling Research Laboratory (PMR Lab) Department of Mechanical Engineering PES University 100 Feet Ring Road BSK Ⅲ Stage Bangalore 560085 India;

    Process Modelling Research Laboratory (PMR Lab) Department of Mechanical Engineering PES University 100 Feet Ring Road BSK Ⅲ Stage Bangalore 560085 India;

  • 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

    automotive cooling system; SEM; nanofluid; functionalized graphene; pressure drop;

    机译:汽车冷却系统;SEM;纳米流体;官能化石墨烯;压力下降;

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