首页> 外文期刊>International Journal of Heat and Mass Transfer >Convective heat transfer characteristics of CNT nanofluids in a tubular heat exchanger of various lengths for energy efficient cooling/heating system
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Convective heat transfer characteristics of CNT nanofluids in a tubular heat exchanger of various lengths for energy efficient cooling/heating system

机译:CNT纳米流体在各种长度的管状热交换器中的对流传热特性,用于节能冷却/加热系统

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This paper presents the heat transfer characteristics of CNT based nanofluids in a tubular heat exchanger of various lengths for cooling/heating applications. The nanofluid is prepared by dispersing multi-wall carbon nanotubes (MWCNT) in water-ethylene glycol mixture (70:30 by volume), and the value of the Prandtl number increases by 115.8% at 0℃, and 180.2% at 40 ℃ for the nanofluids with 0.45 vol.% MWCNT, compared to the base fluid. In contrast to the conventional heat transfer concept, the value of the Nusselt number for the nanofluids increases with decrease in the Reynolds number as the MWCNT concentration increases. The results showed the significant enhancement in the convective heat transfer coefficient in the entrance region. The possible reason for the abnormal enhancement in the heat transfer coefficient for the shorter length of the test section is due to the migration of the carbon nanotubes. This migration of carbon nanotubes does not allow the thermal boundary layer to develop at the faster rate.
机译:本文介绍了用于冷却/加热应用的各种长度的管状热交换器中基于CNT的纳米流体的传热特性。通过将多壁碳纳米管(MWCNT)分散在水-乙二醇混合物(体积比为70:30)中制备纳米流体,对于0℃,普朗特数的值在0℃时增加115.8%,在40℃时的Prandtl值增加180.2%。与基础流体相比,具有0.45%(体积)MWCNT的纳米流体。与常规传热概念相反,随着MWCNT浓度的增加,纳米流体的努塞尔数值随雷诺数的减少而增加。结果表明,入口区域的对流换热系数显着提高。对于较短的测试部分长度,传热系数异常增加的可能原因是由于碳纳米管的迁移。碳纳米管的这种迁移不允许热边界层以更快的速度发展。

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