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An experimental study on heat transfer and pressure drop of MWCNT-water nano-fluid inside horizontal coiled wire inserted tube

机译:MWCNT-水纳米流体在水平盘绕插管内传热和压降实验研究

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An experimental investigation has been carried out to study the heat transfer and pressure drop characteristics of Nanofluid turbulent flow inside horizontal copper tube with different wire coil inserts under constant heat flux. The plain and coil inserted tubes were used as the test section's geometries and were heated by an electrical coil heater to produce constant heat fluxes. Nanofluids with different particle weight concentrations of 0.05%, 0.1%, and 0.2% were prepared by dispersion of functionalized multi-walled carbon nanotubes (MWCNTs) in distilled water and stabilized by means of an ultrasonic device. The effect of different parameters such as Reynolds number, nano-particle concentration, wire diameter and coil pitch on heat transfer coefficient and pressure drop are studied. Observations clearly show that for a specific nanoparticle concentration, increase in both heat transfer and pressure drop is obtained by inserting coil wires. In average, 85% increase in heat transfer coefficient and 475% penalty in pressure drop was observed at the highest Reynolds number inside the wire coil inserted tube with the highest wire diameter. Finally, two new correlations are introduced using the results of the experiments for predicting the Nusselt number and friction factor of the nanofluid flow inside coiled wires inserted tubes.
机译:已经进行了实验研究,以研究在恒定热通量下,具有不同线圈插入物的水平铜管内的纳米流体湍流的传热和压降特性。将普通管和插入线圈的管用作测试部分的几何形状,并通过电线圈加热器加热以产生恒定的热通量。通过将官能化的多壁碳纳米管(MWCNT)分散在蒸馏水中并通过超声装置进行稳定,可以制备出具有不同浓度的0.05%,0.1%和0.2%的纳米流体。研究了雷诺数,纳米粒子浓度,线径和线圈节距等不同参数对传热系数和压降的影响。观察清楚地表明,对于特定的纳米颗粒浓度,通过插入线圈导线可以获得传热和压降的增加。平均而言,在具有最大焊丝直径的焊丝插入管内的最高雷诺数下,观察到传热系数增加了85%,压降损失了475%。最后,利用实验结果介绍了两个新的相关性,以预测绕线插入管内纳米流体流动的努塞尔数和摩擦系数。

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