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Effects of a Kind of Surface Groove on Flow Loss in Both Rectangular and Circular Ducts at Different Reynolds Numbers

机译:一种表面槽对不同雷诺数矩形和圆形管道流量损耗的影响

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摘要

Pipes are widely used to transport gas, oil and water in industries.Drag reduction in pipes is an increasingly concerned problem to save energy.Some researches have indicated that the non-smooth surface with special structures can reduce flow loss.In this paper, an experimental investigation has been performed on the effects of a kind of surface groove on the drag in both rectangular and circular duct at different Reynolds numbers.In the experiment of the rectangular duct, total pressure at both inlet and outlet were measured.Static pressure on the wall was measured on the surface with smooth and grooved film respectively.While in the circular duct, a boundary layer pressure probe was used to measure the total pressure distribution at both inlet and outlet.Four taps at inlet and outlet were used to measure static pressure.The loss coefficient is used to evaluate the effects of the surface groove on drag reduction.The experiment was conducted with the Reynolds number range from 1.28 × 104 to 2.57× 104.The result shows a maximum drag loss reduction of approximately 2.4% in rectangular duct at Reynolds number of 2.4 × 104.A 10% reduction of pipe pressure loss by grooved surface is measured in circular duct at a Reynolds number of 3.0 × 105.
机译:管道被广泛用于运输天然气,石油和水的工业。减少管道的延伸是节省能源的越来越有关的问题。有些研究表明,具有特殊结构的非光滑表面可以减少流量损失。本文在不同雷诺数字的矩形和圆形管道中的拖拉在不同雷诺数的拖动中进行了实验研究。在矩形管道的实验中,测量了入口和出口的总压力。静态压力在表面上测量壁,分别在表面上测量光滑和凹槽。在圆形管道中,使用边界层压力探针测量入口和出口的总压力分布。使用进出口和出口的抽头来测量静压。损失系数用于评估表面槽对减阻的影响。用雷诺数范围从1.28×1进行实验04至2.57×104.结果显示了雷诺数2.4×104.a的矩形管道上的最大阻力损耗约2.4%的矩形管道,在雷诺数的圆形管道中测量了由沟槽的管道压力损失减少的10% 3.0×105。

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