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Study on performance enhancement factors in turbulent flow of CNT/water nanofluid through a tube fitted with helical screw louvered rod inserts

机译:用螺旋螺杆宽杆杆插入杆插入件CNT /水纳米流体湍流性能增强因子研究

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摘要

The aim of this study is to investigate the enhancement of thermal performance characteristics in a plain tube fitted with helical screw louvered rod inserts using water and carbon nanotube (CNT)/water nanofluids of 0.1%, 0.2% and 0.5% volume concentration under turbulent flow condition. In the experiments, the swirling flow was introduced by using helical screw louvered rod inserts arrangements (forward and backward) inside the inner test tube with different twist ratios, Y = 1.78, 2.44 and 3.0. The experimental results revealed that the increase in heat transfer rate of the helical screw louvered rod insert was found to be strongly influenced by turbulence or vortex motion. The use of helical louvered rod inserts in plain tube causes intensification in heat transfer compared to plain tube for a given Reynolds number, while the Friction Factor was higher which increases with decrease in twist ratio. The maximum thermal performance factor value of 1.23 was found with the use of CNT/water nanofluid of 0.5% volume concentration with twist ratio of 1.78 in backward arrangement. Thermal performance analysis based on the constant pumping power criteria showed that helical louvered rod inserts with backward arrangement led to better thermal performance than that with forward arrangement.
机译:本研究的目的是研究使用水和碳纳米管(CNT)/水纳米流体的螺旋螺杆宽杆插入杆插入物的螺旋管中的热性能特性的增强0.1%,0.2%和0.5%在湍流下的体积浓度下健康)状况。在实验中,通过使用螺旋螺杆宽圆杆插入内部试管内的螺杆螺钉百叶窗杆(向前和向后)引入旋转流动,其具有不同的捻度比,Y = 1.78,2.44和3.0。实验结果表明,发现螺旋螺杆叶片杆插入杆插入件的传热速率的增加被湍流或涡旋运动受到强烈影响。与给定的雷诺数的普通管相比,使用螺旋宽杆插入件在普通管中的使用导致热传递的强化,而摩擦系数较高,随着捻度的降低而增加。使用0.5%体积浓度的CNT /水纳米流体以1.78的倒置装置的捻度的0.5%体积浓度的使用CNT /水纳米流体,发现了1.23的最大热性能因子值。基于恒定泵送功率标准的热性能分析表明,螺旋宽杆插入杆插入件,后向布置导致比前进布置更好的热性能。

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