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首页> 外文期刊>Renewable & Sustainable Energy Reviews >Heat transfer growth of sonochemically synthesized novel mixed metal oxide ZnO+Al_2O_3+TiO_2/DW based ternary hybrid nanofluids in a square flow conduit
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Heat transfer growth of sonochemically synthesized novel mixed metal oxide ZnO+Al_2O_3+TiO_2/DW based ternary hybrid nanofluids in a square flow conduit

机译:在方形流动管道中的Sonochemicaly合成的新型混合金属氧化物ZnO + Al_2O_3 + TiO_2 / DW基三元杂交纳米流体的传热生长

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In the current investigation, the heat transfer development with the turbulent flow of novel metal oxide-based ternary composite nanofluids of ZnO + Al2O3+TiO2/DW at varying wt.% concentrations (0.025, 0.05, 0.075, and 0.1) in a square heat exchanger below constant heat flux conditions was discussed. The new ternary composite nanofluids were synthesized by using the sonochemical technique. The ZnO + Al2O3+TiO2/DW based ternary composite nanofluids with their respective wt. % reveals an enhancement in effective thermal conductivity and heat transfer coefficient local and average with Reynolds numbers varying from 4550 to 20,367. The extreme growth in overall effective thermal conductivity was noticed up to 1.149 W/m-K at 0.1 wt% for ternary hybrid composite nanofluids at a maximum temperature 45 degrees C. Similarly, at 0.075 wt%, 0.05 wt%, and 0.025 wt % the overall effective thermal conductivity was recorded 1.118 W/m-K, 1.091 W/m-K, and 1.079 W/m-K correspondingly, which is greater than that of base fluid (DW), with improved thermo-physical characteristics for novel ZnO + Al2O3+TiO2/DW ternary hybrid composite nanofluids. Also, it shows an improvement in local and average heat transfer with a maximum growth of 0.1 wt %. The maximum heat transfer was observed for ZnO + Al2O3+TiO2/DW based Ternary hybrid composite nanofluids at 0.1 wt % concentrations, up to 900-5700 W/m(2)K, which is 89% higher than distilled water. While, an enhancement of 900-3870 W/m(2)K, 900-3350 W/m(2)K, 900-2750 W/m(2)K were observed for the other three wt. % 0.075, 0.05 and 0.025, respectively. The study revealed that the metal oxide based ternary hybrid composites nanofluids are suitable for nano coolant applications due to improved thermophysical characteristics and also it is applicable for energy management in industrial applications.
机译:在目前的调查,与湍流传热发展新型金属的流动氧化物基的ZnO +氧化铝+二氧化钛/ DW的三元复合纳米流体在不同的重量为方形热%的浓度(0.025,0.05%,0.075,和0.1)讨论了低于恒定热通量条件的交换器。通过使用SONOCHEMICAL技术合成新的三元复合纳米流体。基于ZnO + Al2O3 + TiO2 / DW的三元复合材料纳米流体,其各自的WT。 %揭示了有效的导热系数和传热系数的增强,以及与4550至20,367不同的雷诺数的平均值。对于最高温度45℃的三元杂合复合材料纳米流体,总体有效导热率的极端生长达到1.149W / mk。同样,在45℃下的最高温度为45℃,0.075wt%,0.05重量%和0.025wt%有效热传导率是记录1.118 W / MK,1.091 W / MK,和1.079 W / mK的相应的,这比基液(DW)的值,与新颖的ZnO +氧化铝+二氧化钛/ DW三元改进的热物理特性杂交复合纳米流体。而且,它显示出局部和平均热传递的改善,其最大增长为0.1wt%。对于ZnO + Al2O3 + TiO2 / DW的三元杂合复合材料纳米流体,观察到最大热传递在0.1wt%浓度下,高达900-5700w / m(2)k,其比蒸馏水高89%。同时,观察到其他三个重量900-3870瓦/米(2)K,900-3350瓦/米(2)K,900-2750瓦/米(2)K的增强。 %0.075,0.05和0.025。该研究表明,由于热物理特性提高,金属氧化物基三元杂化复合材料适用于纳米冷却剂应用,并且适用于工业应用中的能源管理。

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