Optimization of the Effects of Binary Hybrid Nanofluid Synthesis Parameters on the Thermal and Hydraulic Characteristics

O. Keklikcioglu, V. Ozceyhan
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Abstract

Due to the growing interest in hybrid nanofluids, researchers have been primarily focused to obtain the thermophysical properties of hybrid nanofluids. Several parameters such as temperature, volume or weight fractions, nanoparticle types and shapes affected the thermophysical properties of nanofluids. Accordingly, the optimization in thermal conductivity and viscosity of nanofluids obtained by mixing binary nanocomposite particles GnP-Fe3O4 in an ethylene glycol-water base fluid with a mixing ratio of 20-80 % was investigated in this study. The Taguchi approach is used for single-objective optimization and the significance values of the synthesis parameters were determined using the ANOVA technique. Five different factors, including mechanical strring time, ultrasonic mixing time and power, surfactant mixing ratio, and nanofluid weight ratio, were optimized at three different levels during the synthesis of hybrid nanofluids. The experimental L27(35) orthogonal array trial was built in order to carry out the optimization. According to the results, mechanical striring time was found to have the least impact on both thermophysical parameters, whereas ultrasonic mixing power, nanofluid weight ratio, and ultrasonic mixing time were also ranked from low to high impact. The usage of surfactant was shown to be the parameter that had the greatest impact, with rates of 63.57% and 65.31%, on thermal conductivity and viscosity, respectively.
二元杂化纳米流体合成参数对热液特性影响的优化研究
由于人们对混合纳米流体的兴趣日益浓厚,研究人员主要集中在获得混合纳米流体的热物理性质上。温度、体积或重量分数、纳米颗粒类型和形状等几个参数都会影响纳米流体的热物理性质。因此,本研究研究了在乙二醇-水基流体中以20- 80%的混合比例混合二元纳米复合粒子GnP-Fe3O4所获得的纳米流体的导热性和粘度的优化。采用田口法进行单目标优化,采用方差分析确定合成参数的显著性值。在混合纳米流体合成过程中,对机械串接时间、超声搅拌时间和功率、表面活性剂混合比、纳米流体重量比等5个因素进行了3个不同层次的优化。建立L27(35)正交阵列试验进行优化。结果表明,机械搅拌时间对热物性参数的影响最小,而超声搅拌功率、纳米流体重量比、超声搅拌时间对热物性参数的影响由小到大。表面活性剂的用量对导热系数和粘度的影响最大,分别为63.57%和65.31%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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