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首页> 外文期刊>Journal of thermal analysis and calorimetry >Effects of perforated anchors on heat transfer intensification of turbulence nanofluid flow in a pipe
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Effects of perforated anchors on heat transfer intensification of turbulence nanofluid flow in a pipe

机译:穿孔锚对管道中湍流纳米流体流动传热强化的影响

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In this paper, a study is conducted to determine the influences of perforated anchors on heat transfer intensification of turbulence nanofluid flow in a pipe. Six different turbulence models are used, and the results obtained by these models are benchmarked with the existing theoretical data to select the best turbulence model. The outputs showed that the k-epsilon-RNG-scalable wall function model has higher accuracy and so it is selected to simulate this problem. The influences of various parameters including the addition of perforation on the anchors, the perforation diameter (in the range of 1-5 mm), the Re number (in the range of 5000-25,000), and the volumetric concentration of nanoparticles (in the range of 1-5%) on the friction factor, convective heat transfer rate, and thermal enhancement factor of Al2O3/water nanofluid flow inside the enhanced pipe with anchors are studied. The outputs indicate that the friction factor associated with the anchors decreases with creating the perforations on the anchors. The usage of nanofluid is proper from both viewpoints of the heat transfer improvement and the pressure loss penalty because all thermal enhancement factors of the system are larger than unity. At Re = 5000, the thermal enhancement factor enhances about 12.28% by boosting the volumetric concentration of nanoparticles in the range of 1-5%.
机译:本文进行了一种研究,以确定穿孔锚对管中湍流纳米流体流动传热强化的影响。使用六种不同的湍流模型,并通过这些模型获得的结果与现有的理论数据基准测试以选择最佳湍流模型。输出显示K-EPSILON-RNG可伸缩的壁函数模型具有更高的精度,因此选择模拟此问题。各种参数的影响包括在锚固件上添加穿孔,穿孔直径(在1-5mm的范围内),RE编号(在5000-25,000的范围内)和纳米颗粒的体积浓度(在研究了1-5%的范围,对具有锚固管内的增强管内的Al2O3 /水纳米流体流动的对流因子,对流传热速率和热增强因子。输出表明与锚固相关的摩擦因子随着在锚固件上产生穿孔而减小。纳米流体的使用是从传热改进的观点和压力损失惩罚的适当,因为系统的所有热增强因子大于单位。在RE = 5000,通过促进1-5%范围内的纳米颗粒的体积浓度,热增强因子增强了约12.28%。

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