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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Numerical investigation of the effects of fin shape, antifreeze and nanoparticles on the performance of compact finned-tube heat exchangers for automobile radiator
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Numerical investigation of the effects of fin shape, antifreeze and nanoparticles on the performance of compact finned-tube heat exchangers for automobile radiator

机译:翅片形状,防冻剂和纳米粒子对汽车散热器紧凑型翅片管热交换器性能的数值研究

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摘要

In this paper, heat transfer and pressure drop of air in the radiator of an internal combustion engine automobile were investigated. First, three types of fins including louvered, triangular vortex generator and rectangular vortex generator were modeled and their performance were compared with a plain fin. Effects of adding antifreeze in volume ratios of 40, 50 and 60% on the performance of louvered and rectangular vortex generator fins were investigated. Finally, the effects of adding copper oxide and aluminum oxide nanoparticles on the heat transfer improvement of louvered and rectangular vortex generator fins were simulated. The results demonstrated that louvered fin had the highest heat transfer rate compared to the other fins and improved it up to 24.6% in comparison with plain fin; however, its air side pressure drop increased 67.7%. Adding antifreeze resulted in a decrease in heat transfer rate. For example, heat transfer rate decreased for louvered and rectangular vortex generator fins at 60% vol. antifreeze, 12.9 and 11.8% compared to pure water, respectively. Also, adding copper oxide and aluminum oxide nanoparticles improved heat transfer rate and compensated harmful effects of antifreeze and it increased heat transfer rate in comparison with pure water.
机译:本文研究了内燃机汽车散热器中的空气传热和压降。首先,建模了三种类型的翅片,包括百叶窗,三角涡流发生器和矩形涡流发生器,并将其性能与普通翅片进行了建模。研究了在40,50%和60%的体积比中添加防冻剂对百叶窗和矩形涡流发生器翅片性能的影响。最后,模拟了添加氧化铜和氧化铝纳米粒子对百叶窗和矩形涡流发生器翅片的传热改进的影响。结果表明,与其他翅片相比,百叶窗的传热速率最高,与普通鳍相比,将其提高至24.6%;然而,其空气侧压降增加了67.7%。添加防冻液导致传热速率的降低。例如,在60%Vol的百叶窗和矩形涡流发生器鳍片中减少了传热速率。与纯水相比,防冻剂,12.9和11.8%。而且,加入氧化铜和氧化铝纳米颗粒改善了传热速率并补偿了防冻剂的有害影响,并且与纯水相比增加了传热速率。

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