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3D Simulation on turbulent flow and heat transfer behaviors in a five-start corrugated tube: Effect of depth ratio and tube modification

机译:五启动波纹管中湍流和传热行为的3D仿真:深度比和管改性的影响

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This paper presents a 3D simulation of turbulent ?ow and heat transfer behaviors in a five-start corrugated tube having depth ratios, DR = 0.02-0.16 and constant pitch ratio, PR = 1.0 0 and the Reynold number ranging from 5000 to 20,000. The effects of modified tubes: five-start vortex-flow corrugated tube and five-start cross corrugated tubes with different PR = 1.0-2.5 and constant DR = 0.06, were investigated. The results show that swirl flows were generated by the five-start corrugated tube with spiral wall while the five-start vortex-flow corrugated tube and five-start cross corrugated tube created a pair of vortex and multiple vortices flows, respectively. The modified tubes provided a heat transfer rates (range 26.8-172.1%) and thermal enhancement factor (range 12.6-90.8%) higher than the five-start corrugated tube. The five-start vortex-flow corrugated tube provided the highest thermal enhancement factor at 2.07 at DR=0.06, PR=1.5 and Re = 5000.
机译:本文介绍了湍流的3D模拟,在具有深度比率,DR = 0.02-0.16和恒定间距比,PR = 1.0 0和雷诺数范围为5000至20,000。 改性管的效果:五开始涡流波纹管和具有不同PR = 1.0-2.5和恒定DR = 0.06的五启动交叉瓦楞纸管。 结果表明,旋流由带螺旋壁的五启动波纹管产生,而五开始涡流瓦楞纸管和五开始横向波纹管的产生分别产生一对涡流和多个涡流。 改性管提供的热传递率(范围为26.8-172.1%)和高于五启动波纹管的热增强因子(范围为12.6-90.8%)。 五开始涡流波纹状管在= 0.06,PR = 1.5和RE = 5000处提供2.07的最高热增强因子。

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