Al2O3-TiO2-SiO2纳米流体对汽车散热器冷却性能的实验研究

Q2 Engineering
A. I. Ramadhan, W. Azmi, R. Mamat, Ery Diniardi, T. Hendrawati
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引用次数: 5

摘要

在汽车散热器中使用纳米颗粒冷却液增加了传热速率,并有利于减小整体散热器尺寸。在本研究中,实验分析了基于三混合纳米流体的水/EG(60:40)的传热特性,并与水/EG(60:40)进行了比较。在水/乙二醇(60:40)的混合物中加入0.05 ~ 0.3 vol.%的三杂化纳米流体,制备了四种不同浓度的纳米流体。在工作温度为70℃、平均风速为4 m/s的情况下,通过改变冷却剂流量在2 ~ 12 LPM之间进行实验,了解冷却剂流量对换热的影响。结果表明,当体积浓度为0.3%,工作温度为70℃时,研究了三杂化纳米流体在水/EG(60:40)混合物中的热性能。在体积浓度为0.05%时,空气侧传热系数增大23.8%,而在体积浓度为0.3%时,冷却剂侧传热系数增大39.7%。压降和泵送功率随体积浓度的增加具有相同的规律。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental Investigation of Cooling Performance in Automotive Radiator using Al2O3-TiO2-SiO2 Nanofluids
The use of nanoparticle coolant fluid in the car radiator increases the rate of heat transfer and facilitates the reduction of the overall radiator size. In this study, heat transfer characteristics of tri-hybrid nanofluids-based water/EG (60:40) were analyzed experimental and compared with water/EG (60:40). Four different nanofluids concentrations were prepared by adding 0.05 to 0.3 vol.% of tri-hybrid nanofluids dispersed a mixture of water/ethylene glycol (60:40). Experiments were carried out by varying the flow rate of coolant between 2 to 12 LPM for working temperature of 70 °C, the velocity of airflow remained at an average of 4 m/s, to understand the effect of coolant flow rate on heat transfer. The results showed that the thermal performance of tri-hybrid nanofluids in a water/EG (60:40) mixture has been investigated for volume concentrations of up to 0.3% and working temperature of 70 °C. The maximum enhancement of heat transfer coefficient for air side is observed up to 23.8% at 0.05% volume concentration meanwhile for coolant side is observed at 39.7% at 0.3% volume concentration. The pressure drop and pumping power have the same pattern which increasing in volume concentrations.
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来源期刊
Automotive Experiences
Automotive Experiences Engineering-Automotive Engineering
CiteScore
3.00
自引率
0.00%
发文量
14
审稿时长
12 weeks
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