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首页> 外文期刊>Heat transfer >On the evaluation of a finned annular tube in convective heat transfer performance in the presence of Ag/oil nanofluid for a constant thermal flux rate boundary condition
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On the evaluation of a finned annular tube in convective heat transfer performance in the presence of Ag/oil nanofluid for a constant thermal flux rate boundary condition

机译:在恒定热通量边界条件下,在存在银/油纳米流体的情况下评估翅片环形管的对流传热性能

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摘要

In the present empirical work, the effectiveness of a finned annular tube in the presence of Ag/oil nanofluid is investigated. An annular tube with axial fins was considered as the test case. Suspended Ag nanoparticles in different volume concentrations of 0.011%, 0.044%, and 0.176% were examined in this work. The setup was designed in a way to be sure that the flow is hydrodynamically fully developed along the tube. This experiment has been done in a laminar flow regime in which Reynolds number was less than 160 for all the studied cases. The finned annular tube was wrapped with a coil that satisfied the condition of a constant thermal flux rate of 204 W on the outer boundary. Based on the acquired data, the convective heat transfer coefficient was obtained for all the nanofluid cases and compared to the base fluid. It was observed that the convective heat transfer coefficient substantially rises by increasing the nanoparticles. Which for the best case (volume concentration of 0.171% and Reynolds number of about 160), this factor was about a 33% enhancement compared to the base fluid.
机译:在目前的经验工作中,研究了在存在银/油纳米流体的情况下翅片式环形管的有效性。带有轴向翅片的环形管被认为是测试案例。在这项工作中,检查了不同体积浓度的0.011%,0.044%和0.176%的悬浮Ag纳米颗粒。装置的设计方式可确保流体沿管道在流体动力学上完全展开。该实验是在层流条件下完成的,其中所有研究案例的雷诺数均小于160。翅片式环形管用线圈包裹,该线圈在外边界上满足恒定热通量率为204 W的条件。根据获取的数据,获得所有纳米流体情况的对流传热系数,并将其与基础流体进行比较。观察到,通过增加纳米颗粒,对流传热系数显着提高。在最佳情况下(体积浓度为0.171%,雷诺数约为160),与基础流体相比,该系数提高了约33%。

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