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首页> 外文期刊>Heat transfer >On the Performance of Ag/Oil Nanofluids in Heat Transfer Enhancement in a Sinusoidal Tube: Constant Heat Flux Boundary Condition
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On the Performance of Ag/Oil Nanofluids in Heat Transfer Enhancement in a Sinusoidal Tube: Constant Heat Flux Boundary Condition

机译:Ag /油纳米流体在正弦管传热增强中的性能:恒定热通量边界条件

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The present work provides an empirical investigation on the thermal characteristics of Ag/oil nanofluids flow inside a sinusoidal tube under a constant heat flux boundary condition. Ag/oil nanofluids have been prepared in low-volume concentrations of 0.011%, 0.044%, and 0.171%. The average size of the nanoparticles was 20 nm. A heated coil was attached to the upper and lower surface of the tube that satisfied the constant thermal boundary condition of 204 W. The experiment has been pursued at low Reynolds numbers less than 160. A loop was designed to keep the flow hydrodynamically fully developed during the experiment. The test case was a sinusoidal tube. Upper and lower surfaces of the tube have been designed sinusoidally. Moreover, the width of the plates was long enough, so the problem was not considerably affected by the three-dimensional releasing effect. Convective heat transfer coefficient and Nusselt number were calculated. It has been observed that based on the acquired data of the present work, convective heat transfer coefficient increased up to 23% for the best case (nanofluid with a volume concentration of 0.171 %) compared to the base fluid. This happened while the rise of the friction factor was very low. In addition, a comparison between the new results and the previous work by authors showed the positive performance of sinusoidal tubes in increasing the convective heat transfer coefficient (the average increase was calculated to be about 82%) compared to the annular tube.
机译:本工作提供了在恒定热通量边界条件下正弦管内流动的Ag /油纳米流体的热特性的经验研究。 Ag /油纳米流体已经以0.011%,0.044%和0.171%的小体积浓度制备。纳米颗粒的平均尺寸为20nm。加热的盘管安装在满足204 W恒定热边界条件的管子的上表面和下表面。在低于160的低雷诺数下进行了该实验。设计了一个环路,以在流动过程中保持流体在流体动力学上充分发展本实验。测试用例是正弦管。管子的上表面和下表面设计成正弦形。而且,板的宽度足够长,因此该问题不受三维释放效果的影响很大。计算了对流换热系数和努塞尔数。已经观察到,基于当前工作的获得数据,与基础流体相比,在最佳情况下(对流流体的体积浓度为0.171%),对流传热系数提高了23%。发生这种情况时,摩擦系数的上升非常低。此外,新结果与作者先前的工作之间的比较表明,与环形管相比,正弦管在增加对流传热系数方面的积极作用(平均增加量约为82%)。

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