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Experimental and Numerical Investigation on Non-Newtonian Nanofluids Flowing in Shell Side of Helical Baffled Heat Exchanger Combined with Elliptic Tubes

机译:螺旋折流板换热器椭圆管壳侧非牛顿纳米流体流动的实验与数值研究

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In this paper, an aqueous solution of xanthan gum (XG) at a weight fraction as high as 0.2% was elected as the non-Newtonian base liquid, the multi-walled carbon nanotubes (MWCNTs) dispersed into non-Newtonian XG aqueous at different weight factions of MWCNTs was prepared. Convection heat transfer of non-Newtonian nanofluids in the shell side of helical baffled heat exchanger combined with elliptic tubes has been investigated experimentally and numerically using single-phase flow model. Results showed that the enhancement of the convective heat transfer coefficient increases with an increase in the Reynolds number and the nanoparticle concentration. For nanofluids with 0.2 wt %, 0.5 wt % and 1.0 wt % MWCNTs, the Nusselt number, respectively, increases by 11%, 21% and 35% on average at the same Reynolds number, while the comprehensive thermal performance factors are 3%–5%, 15%–17% and 24%–26% higher than that of base fluid at the same volume rate. A remarkable heat transfer enhancement can be obtained by adding MWCNTs into XG aqueous solution based on thermal resistance analysis. Correlations have been suggested for the shell-side Nusselt number and friction factor of non-Newtonian nanofluids in the helical baffled heat exchanger with elliptic tubes. Good agreements existed between corrections and experimental data.
机译:本文以重量分数高达0.2%的黄原胶(XG)水溶液为非牛顿基础液,将多壁碳纳米管(MWCNTs)分散在非牛顿XG水溶液中。制备了MWCNT的重量级。利用单相流模型,通过数值模拟和实验研究了螺旋折流板换热器与椭圆管的壳侧非牛顿纳米流体的对流换热。结果表明,对流传热系数的增加随着雷诺数和纳米颗粒浓度的增加而增加。对于具有0.2 wt%,0.5 wt%和1.0 wt%MWCNT的纳米流体,在相同的雷诺数下,努塞尔数分别平均增加11%,21%和35%,而综合热性能因子为3%–在相同体积比下,比基础油分别高5%,15%–17%和24%–26%。通过基于热阻分析将MWCNT添加到XG水溶液中,可以获得显着的传热增强。已经提出了在具有椭圆管的螺旋折流式换热器中,非牛顿纳米流体的壳侧努塞尔数和摩擦系数的相关性。校正和实验数据之间存在良好的一致性。

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