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Heat Transfer and Fluid Flow Behaviors in a Five-Start Spiral Corrugated Tube

机译:五开始螺旋瓦楞凿管中的传热和流体流动性

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This paper presented a numerical investigation on turbulent periodic flow, heat transfer, pressure loss and thermal enhancement factor in a 3D five-start spiral corrugated tube. Air was used as the working fluids through the tube for Reynolds numbers of about 5000-20,000. In the current studied, the five-start spiral corrugated tube with six relative pitch ratios (p/D, PR=1.0, 1.5, 2.0, 2.5, 3.0 and 3.5) with constant depth ratio (e/D, DR=0.06). The numerical results reveal that the five-start spiral corrugated tube can generated a swirl flow, main swirl flow and five-secondary swirl flow. This behavior lead to the major change of temperature in transverse plane, reduced thermal layer thickness and enhanced heat transfer on the tube wall. The five-start spiral corrugated tube in range investigated provided the heat transfer rate and friction factor up to 2.02 and 6.12 times, respectively, over the straight circular tube. The thermal enhancement factor of the five-start spiral corrugated tube in the range of 0.89-1.16 where its maximum found as the optimum point is at PR=2.0.
机译:本文介绍了3D五启动螺旋波纹管中的湍流周期性,传热,压力损失和热增强因子的数值研究。通过管用作工作流体的空气,用于雷诺数为约5000-20,000。在本电流研究中,具有恒定深度比(E / D,DR = 0.06)的六个相对俯仰比(P / D,PR = 1.0,1.5,3.5,3.0和3.5)的五启动螺旋瓦楞纸管。数值结果表明,五启动螺旋波纹管可以产生旋流,主旋流和五级旋流。这种行为导致横向平面中的温度的主要变化,降低的热层厚度和管壁上增强的热传递。范围内的五启动螺旋瓦楞纸管在直线管上分别提供了传热速率和摩擦因子高达2.02和6.12倍。五启动螺旋瓦楞凿管的热增强因子在0.89-1.16的范围内,其最大值在最佳点处于Pr = 2.0。

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