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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Experimental investigation on the hydrothermal attributes of MWCNT/water nanofluid in the shell-side of shell and semi-circular tubes heat exchanger
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Experimental investigation on the hydrothermal attributes of MWCNT/water nanofluid in the shell-side of shell and semi-circular tubes heat exchanger

机译:壳体壳体壳侧MWCNT /水纳米流体水热处理的实验研究

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摘要

This study experimentally examines the hydrothermal performance attributes of a horizontal shell and semicircular tubes (SCTs) heat exchanger of a counter-flow configuration. The tests are done by employing cold pure water or Multi-Walled Carbon Nanotube (MWCNT)/water nanofluid in the shell-side. The SCTs spacing ratio (0.157 <= delta <= 0.472), MWCNT volume concentration (0 <= phi <= 0.5%), and the operational conditions of the shell-side (3351 <= Re-sh <= 13461, 4.85 <= Pr-sh <= 7.54) are the key parameters throughout this study. Compared with the case of employing complete circular tubes and pure water in the shell-side, the results state that splitting the internal tubes and/or adding MWCNT increase both the shell-average Nusselt number (Nu(sh)) and Fanning friction factor (f(sh)), by average increases of 44.4-106.2% and 7.1-29.6%, respectively, when delta increases from 0.157 to 0.472, and with average increases of 8.2-41.8% and 5.9-33.6%, respectively, when phi increases from 0.1% to 0.5%. The hydrothermal performance index (HTPI) is assessed to compare the performance of the heat exchanger with SCTs and with/without MWCNT to that of the case of circular tubes and pure water. The results record that incorporating both SCTs (delta = 0.472) and MWCNT (phi = 0.5%) provides the highest HTPI; 2.46, and it is reduced by their reduction. Finally, correlations for Nu(sh), f(sh), and HTPI are proposed.
机译:本研究通过实验研究了逆流配置的水平壳和半圆形管(SCTS)热交换器的水热性能属性。通过在壳体中使用冷纯水或多壁碳纳米管(MWCNT)/水纳米流体来完成测试。 SCTS间距比(0.157 <=Δ<= 0.472),MWCNT体积浓度(0 <= PHI <= 0.5%),以及壳侧的操作条件(3351 <= RE-SH <= 13461,4.85 < = PR-SH <= 7.54)是本研究中的关键参数。与在壳体中使用完整的圆形管和纯净水的情况相比,切割内部管和/或添加MWCNT的结果状态增加了壳体平均露珠数(NU(SH))和扇形摩擦系数( F(SH))平均增加44.4-106.2%和7.1-29.6%,当时Δ从0.157增加到0.472,分别增加8.2-41.8%和5.9-33.6%时,当PHI增加时从0.1%到0.5%。评估水热性能指数(HTPI)以比较热交换器与SCTS的性能和/没有MWCNT与圆形管和纯水的情况。结合SCT(Delta = 0.472)和MWCNT(PHI = 0.5%)的结果记录提供了最高的HTPI; 2.46,减少了减少。最后,提出了对NU(SH),F(SH)和HTPI的相关性。

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