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Comparison of thermal performances of water-filled, SiC nanofluid-filled and SiC nanoparticles-coated heat pipes

机译:充水,SiC纳米流体填充和SiC纳米涂层的热管的热性能比较

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摘要

In the present study, thermal performances of water-filled and 0.01 and 0.1 vol% SiC/water nanofluids-filled heat pipes with a screen mesh wick and water-filled heat pipe with a SiC nanoparticles-coated screen mesh wick were compared in order to investigate the effects of nanoparti-cles depositions on inner surface structures of heat pipes. The wall temperatures of the SiC nanoparticles-coated heat pipe were found to be higher than those of an uncoated heat pipe while the thermal performance for the heat pipe using a SiC/water nanofluid was not enhanced compared to the heat pipe using water as a working fluid. Also, the heat pipes containing SiC/water nanofluids and SiC-coated wick showed slight increases in evaporator thermal resistances, but minute changes in condenser thermal resistances compared to the water-filled heat pipe. Moreover, the overall thermal resistances of the heat pipes with the SiC/water nanofluids and SiC-coated wick were similar with those of the heat pipe charged with water. In terms of heat transfer performance, the boiling heat transfer of the evaporator zone is explained by changes of the number of activated nucleation sites due to nanoparticle deposition on the wick structure, whereas heat transfer characteristics of the adiabatic and condenser zones are attributed to the liquid film layer which is formed on the wick structure by capillary wicking and is considerable as additional thermal resistance. The SEM images for wicks of heat pipes with nanoparticles-coated layers support the thermal performance characteristics of three types of heat pipes investigated in the study.
机译:在本研究中,比较了装有筛网芯的充水和0.01和0.1%(体积)SiC /水纳米流体的热管和充有SiC纳米颗粒的筛网芯的充水的热性能,以便:研究纳米粒子沉积对热管内表面结构的影响。发现涂覆有SiC纳米颗粒的热管的壁温比未涂覆的热管的壁温高,而与使用水作为工作介质的热管相比,使用SiC /水纳米流体的热管的热性能没有提高。体液。同样,与充水热管相比,包含SiC /水纳米流体和SiC包覆芯的热管的蒸发器热阻略有增加,但冷凝器热阻的变化很小。此外,具有SiC /水纳米流体和SiC涂层芯的热管的总热阻与充水的热管的总热阻相似。就传热性能而言,蒸发区的沸腾传热是由于纳米颗粒沉积在灯芯结构上而引起的活化成核位点数量的变化而引起的,而绝热区和冷凝器区的传热特性则归因于液体通过毛细芯吸作用在灯芯结构上形成的薄膜层,作为附加的热阻是相当大的。具有纳米颗粒涂层的热管芯的SEM图像支持研究中研究的三种类型的热管的热性能特征。

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  • 作者单位

    School of Mechanical and Nuclear Engineering, Ulsan National Institute of Science and Technology (UNIST), 50 UNIST-gil, Ulju-gun, Ulsan 689-798, Republic of Korea;

    School of Mechanical and Nuclear Engineering, Ulsan National Institute of Science and Technology (UNIST), 50 UNIST-gil, Ulju-gun, Ulsan 689-798, Republic of Korea;

    School of Mechanical and Nuclear Engineering, Ulsan National Institute of Science and Technology (UNIST), 50 UNIST-gil, Ulju-gun, Ulsan 689-798, Republic of Korea;

    School of Mechanical and Nuclear Engineering, Ulsan National Institute of Science and Technology (UNIST), 50 UNIST-gil, Ulju-gun, Ulsan 689-798, Republic of Korea;

  • 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

    SiC; Nanoparticle coating; Heat pipe; Nanofluid; Thermal resistance;

    机译:碳化硅;纳米颗粒涂层;热管;纳米流体热阻;

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