首页> 外文期刊>Heat Transfer Research >IMPACT OF TWISTED DUCTS WITH DIFFERENT TWIST RATIOS ON HEAT TRANSFER AND FLUID CHARACTERISTICS OF NiO/WATER NANOFLUID FLOW UNDER MAGNETIC FIELD EFFECT
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IMPACT OF TWISTED DUCTS WITH DIFFERENT TWIST RATIOS ON HEAT TRANSFER AND FLUID CHARACTERISTICS OF NiO/WATER NANOFLUID FLOW UNDER MAGNETIC FIELD EFFECT

机译:磁场效应下不同扭曲比扭曲管道对NiO/水纳米流体流动传热和流体特性的影响

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Laminar forced convection of NiO/water nanofluid in a twisted square duct has been investigated numerically under the effect of an external magnetic field (B = 0 G, 450 G, and 550 G) in the Reynolds number range of 500 <= Re <= 2000. Four different twist ratios (D/L = 0.0, 1.0, 1.5, and 2.0) of the square duct have also been examined. The nanoparticle volume fractions (NPVF) of NiO/water nanofluid have been selected between 0.6 vol. and 2.5 vol.. The effects of the magnitude of the magnetic field (MF), twist ratio, Reynolds number, and nanoparticle volume fraction on thermohydraulic performance have been examined by using the homogeneous model in the numerical analyses. The results of the numerical computations have been reported with average Nusselt number Nu, pressure loss, average Darcy friction factor f, and performance evaluation criterion (PEC). The highest heat transfer increment by 20 has been achieved at D/L = 2.0 with the highest nanoparticle volume fraction, namely, 2.5 vol. NiO/water nanofluid, compared to the case of distilled water (DW) flowing in a plain duct (PD). In addition, it was determined that the magnetic field effect increases the convective heat transfer in the twisted duct with D/L = 2.0 up to 35 compared to the cases in the absence of a magnetic field at D/L = 2.0. Among all cases, the highest PEC has been obtained with 2.5 vol. NiO/water nanofluid flowing in the twisted duct with the twist ratio D/L = 2.0.
机译:在雷诺数范围为500 < = Re <= 2000的外部磁场(B = 0 G、450 G和550 G)作用下,对扭曲方管中NiO/水纳米流体的层流强迫对流进行了数值研究.还检查了方形管道的四种不同扭曲比(D/L = 0.0、1.0、1.5 和 2.0)。NiO/水纳米流体的纳米颗粒体积分数(NPVF)选择在0.6体积%和2.5体积%之间。在数值分析中,利用均次模型研究了磁场大小(MF)、扭转比、雷诺数和纳米颗粒体积分数对热水力性能的影响。数值计算结果已报告为平均努塞尔数 Nu、压力损失、平均达西摩擦系数 f 和性能评估准则 (PEC)。与蒸馏水 (DW) 在普通管道 (PD) 中流动的情况相比,在 D/L = 2.0 时,纳米颗粒体积分数最高,即 2.5 vol.% NiO/水纳米流体,实现了 20% 的最高传热增量。此外,与D/L = 2.0时没有磁场的情况相比,磁场效应使D/L = 2.0的扭曲管道中的对流传热增加了35%。在所有情况下,当扭曲比D/L = 2.0时,2.5体积%的NiO/水纳米流体在扭曲管道中流动,获得了最高的PEC。

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