首页> 外文期刊>International Journal of Heat and Mass Transfer >Entropy generation analysis of graphene-alumina hybrid nanofluid in multiport minichannel heat exchanger coupled with thermoelectric cooler
【24h】

Entropy generation analysis of graphene-alumina hybrid nanofluid in multiport minichannel heat exchanger coupled with thermoelectric cooler

机译:石墨烯-氧化铝杂化纳米流体在多端口微通道换热器与热电冷却器耦合中的熵产分析

获取原文
获取原文并翻译 | 示例
       

摘要

Entropy generation analysis of hybrid nanofluid in a two pass multiport minichannel heat exchanger coupled with a thermoelectric cooler is experimentally investigated. Alumina (Al_2O_3, 50 nm), graphene (5 nm) and the hybrid of these two in equal portions with 0.1% volume concentrations is separately dispersed in to the base fluid and tested. The hydraulic diameter and aspect ratio of the channel are 1.184 mm and 0.689 respectively. The heat flux is varied from 6250 W/m~2 to 25,000 W/m~2 and the flow regime is considered to be laminar with the Reynolds number varying from 200 to 1000. The results showed an enhancement of 17.32% in cooling capacity and coefficient of performance (COP) with the use of pure graphene-water nanofluid when compared with that of the other tested combinations of nanofluids. Total entropy generation decreased from 0.0361 W/K to 0.0184W/K with increase in Reynolds number from 200 to 1000 for the maximum applied heat flux of 25,000 W/m~2. Similarly an enhancement of 88.62% in the convective heat transfer coefficient and a reduction of 4.7 ℃ in the device temperature are achieved when pure graphene-water nanofluid is used as the coolant. Among the tested nanofluids, graphene-water nanofluid shows better performance in terms of heat transfer, thermody-namic and exergic analysis.
机译:实验研究了在与热电冷却器耦合的两程多端口微通道换热器中混合纳米流体的熵产分析。将氧化铝(Al_2O_3,50 nm),石墨烯(5 nm)和这两种均等的混合物(体积分数为0.1%)分别分散到基础流体中并进行测试。通道的水力直径和长宽比分别为1.184毫米和0.689。热通量从6250 W / m〜2到25,000 W / m〜2不等,流态被认为是层流的,雷诺数从200到1000不等。结果表明,制冷量和制冷量提高了17.32%。与其他测试的纳米流体组合相比,使用纯石墨烯-水纳米流体的性能系数(COP)。对于最大施加的25,000 W / m〜2的热通量,随着雷诺数从200增加到1000,总熵产生从0.0361 W / K减少到0.0184W / K。当使用纯石墨烯-水纳米流体作为冷却剂时,对流换热系数提高了88.62%,装置温度降低了4.7℃。在测试的纳米流体中,石墨烯-水纳米流体在传热,热动力学和能动分析方面显示出更好的性能。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号