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Experimental investigation of water based nanofluid containing copper nanoparticles across helical microtubes

机译:跨螺旋微管的含铜纳米颗粒的水基纳米流体的实验研究

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This experimental work mainly focuses on heat transfer and fluid flow characteristics of a nanofluid flowing in the helical microtube (HMT). Experiments encompass Reynolds numbers from 700 to 2100, HMT coil diameters of 0.96 × 10~(-2), 1.43 × 10~(-2), 2.13 × 10~(-2), and 2.87 × 10~(-2) m, and Cu-water nanofluid weight concentrations of 0.0%, 0.1 % and 0.3%. Each HMT is made up of copper microtube with diameter of 787 μm and contains twenty curvatures. Firstly, the experimental setup and procedure are validated using a straight microtube. The results show that the thermal performance of the HMTs is better than the straight microtube. For the same curvatures, both Nusselt number and friction factor increase as the coil diameter of the HMTs decreases. It is also found that the addition of small amounts of Cu nanoparticles to the water augments the heat transfer coefficient of the HMTs with a slight pressure drop. Likewise, the nanofluid flow has higher effects on the thermal-hydraulic performance of the HMT with lower coil diameter. The 0.3% nanofluid gets higher values of the considered performance evaluation criterion (PEC) compared to the base fluid and 0.1% nanofluid. At the studied ranges, the highest value of the PEC of 2.24 is obtained for the 0.3% nanofluid inside the HMT with the coil diameter of 0.96 × 10~(-2) m. Finally, correlations are developed for the Cu-water nanofluid flow inside the HMTs as function of nanoparticle weight fraction, curvature ratio, Reynolds number, and Prandtl number.
机译:这项实验工作主要集中在螺旋微管(HMT)中流动的纳米流体的传热和流体流动特性。实验涵盖雷诺数从700到2100,HMT线圈直径分别为0.96×10〜(-2),1.43×10〜(-2),2.13×10〜(-2)和2.87×10〜(-2)m ,铜水纳米流体的重量浓度为0.0%,0.1%和0.3%。每个HMT由直径为787μm的铜微管组成,并包含20个曲率。首先,使用笔直的微管验证了实验装置和程序。结果表明,HMT的热性能优于直管。对于相同的曲率,随着HMT线圈直径的减小,努塞尔数和摩擦因数都会增加。还发现向水中添加少量的铜纳米颗粒会增加HMT的传热系数,并且压力会略有下降。同样,纳米流体流对线圈直径较小的HMT的热工液压性能有较高的影响。与基础流体和0.1%纳米流体相比,0.3%纳米流体的性能评估标准(PEC)值更高。在研究范围内,HMT内部的0.3%纳米流体的PEC最高值为2.24,线圈直径为0.96×10〜(-2)m。最后,HMT内部的铜水纳米流体流动与纳米颗粒的重量分数,曲率比,雷诺数和普朗特数有关。

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