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HEAT TRANSFER CHARACTERISTICS OF 1-D FERROMAGNETIC NANOFLUID

机译:1-D铁磁性纳米流体的传热特性

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Improving the efficiency of the cooling medium to increase productivity and decrease energy consumption is one of the biggest challenges in the current world. Industries, including transportation, manufacturing, and electronic devices, etc. need efficient thermal management and can benefit from the use of efficient cooling media. Industrial coolants i.e. water, ethylene glycol (EG), or mineral oils have long been used for heat transport though the low thermal conductivity (TC) of these coolants has made them inefficient options for high-performance operations. Metal nanofluids can be potential candidates to replace these inefficient coolants because of their superior thermal properties such as high thermal conductivity, diffusivity, and heat transfer coefficient compared to the base fluids. Nanofluids are a stable suspension of nanoparticles in base media which can offer better thermal conductivity and efficiency. However, preparing stable suspension is one of the major challenges of preparing nanofluids as nanoparticles can aggregate faster over time because of their high surface energy which in turn can have an adverse effect on thermal properties. So far, most research investigations have been done on 0-D nanofluids whereas 1-D nanostructure-based nanofluid study is still very limited. In this work, we have developed a suitable route to prepare novel water-based Cobalt nanowire nanofluids and studied their thermal conductivities. Our study shows that the prepared nanofluid is stable and the thermal conductivity is increased by up to 8.5% compared to base fluid (water).
机译:提高冷却介质的效率,提高生产率,降低能耗是当前世界的最大挑战之一。行业,包括运输,制造和电子设备等。需要高效的热管理,并可从使用高效的冷却介质中受益。工业冷却剂I.E.E.水,乙二醇(例如)或矿物油长期被用于热传输,但是这些冷却剂的低导热率(TC)使其对高性能操作的低效率选择。金属纳米流体可以是潜在的候选者,以替代这些低效的冷却剂,因为它们与基础流体相比的高导热性,扩散性和传热系数如高的热性能。纳米流体是纳米颗粒在基础介质中的稳定悬浮液,其可以提供更好的导热性和效率。然而,制备稳定的悬浮液是制备纳米流体的主要挑战之一,因为纳米颗粒可以随着时间的推移而更快地聚集,这又可以对热性能产生不利影响。到目前为止,大多数研究研究已经在0-D纳米流体上进行,而基于1-D纳米结构的纳米流体研究仍然非常有限。在这项工作中,我们开发了一种合适的途径来制备新型水基含有纳米线纳米流体,并研究了它们的热导体。我们的研究表明,与碱流体(水)相比,制备的纳米流体稳定,导热率高至8.5%。

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