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Stable Nanofluids for Convective Heat Transfer Applications

机译:对流传热应用中的稳定纳米流体

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摘要

Nanofluids are stable dispersions of ultrafine or nanoscale metallic, metal oxide, ceramic particles in a given base fluid. It is reported that nanofluids register an extraordinarily high level of thermal conductivity, and thus possess immense potential in improvement of heat transfer and energy efficiency of several industrial applications including vehicular cooling in transportation, nuclear reactors, and microelectronics. The key issues with nanofluids are: (ⅰ) a robust, cost-effective and scalable method to produce nanofluids to industrial scale has not yet been developed, (ⅱ) stability in industrial applications is not yet established, and (ⅲ) meaningful data in flow based heat transfer process do not exist. The present work attempts to address all these three issues. We have developed an in-situ technique for preparation of stable nanofluids by wet-milling of the metal oxide powder in the base fluid, and in the presence of a suitable dispersant. The nanofluids thus produced are tested for heat transfer efficiency under flow conditions in double pipe heat exchangers. Alumina nanofluids have been found to show enhancements of around 10-60% for various base fluids flown under different flow conditions. Thermal enhancements have been found to depend on the flow-rate, particle concentration, type of base fluid, and material of the thermal contact surface of the heat exchanger. The nanofluids thus obtained exhibit sustained stability (>30 months) and their stability remains unaltered for several heating-cooling cycles.
机译:纳米流体是给定基础流体中超细或纳米级金属,金属氧化物,陶瓷颗粒的稳定分散体。据报道,纳米流体具有极高的导热率,因此在包括运输中的车辆冷却,核反应堆和微电子学在内的几种工业应用中,在提高热传递和能源效率方面具有巨大的潜力。纳米流体的关键问题是:(ⅰ)尚未开发出一种健壮,经济高效且可扩展的方法来将纳米流体生产至工业规模;(ⅱ)尚未建立工业应用的稳定性;(ⅲ)有意义的数据基于流的传热过程不存在。本工作试图解决所有这三个问题。我们已经开发了一种通过在基础流体中湿磨金属氧化物粉末并在合适的分散剂存在下制备稳定的纳米流体的原位技术。在双管式热交换器中,在流动条件下测试由此产生的纳米流体的传热效率。已经发现,对于在不同流动条件下流动的各种基础流体,氧化铝纳米流体显示出约10-60%的增强。已经发现热增强取决于流量,颗粒浓度,基础流体的类型以及热交换器的热接触表面的材料。由此获得的纳米流体表现出持续的稳定性(> 30个月),并且其稳定性在几个加热-冷却循环中保持不变。

著录项

  • 来源
    《Journal of Heat Transfer》 |2014年第2期|021704.1-021704.7|共7页
  • 作者单位

    Tata Research Development and Design Centre, 54B Hadapsar Industrial Estate, Pune, Maharashtra 411013, India;

    Tata Research Development and Design Centre, 54B Hadapsar Industrial Estate, Pune, Maharashtra 411013, India;

    Tata Research Development and Design Centre, 54B Hadapsar Industrial Estate, Pune, Maharashtra 411013, India;

    Tata Research Development and Design Centre, 54B Hadapsar Industrial Estate, Pune, Maharashtra 411013, 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

    stable nanofluids; convective heat transfer; large-scale production; molecular dynamics;

    机译:稳定的纳米流体;对流换热;大规模生产;分子动力学;
  • 入库时间 2022-08-18 00:23:25

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