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FLOW AND HEAT TRANSFER FROM THE ANNULAR FIN HEAT EXCHANGER USING WINGLET TYPE VORTEX GENERATORS

机译:小翼式涡发生器在环形翅片换热器中的流动和传热

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A numerical study of three-dimensional flow and heat transfer from the annular finned tube heat exchanger with built-in delta winglets is carried out. The delta winglets type vortex generators which are placed on the annular fin surface in the neighborhood of the cylinder are used to enhance the heat transfer. The winglets are placed in common flow orientation. Longitudinal vortices develop along the side edge of the delta winglets due to the pressure difference between the front surface (facing the flow) and back surface. These vortices interact with thermal boundary layer and produce a three dimensional swirling flow that mixes near wall fluid with the midstream. Thus the thermal boundary layer is disrupted and heat transfer is enhanced. The investigations are carried out for four different Reynolds number (100, 500 and 1000) and four different angles of attack (35°, 40°, 45°, 50°) for common flow up (CFU) configuration. It is found that heat transfer increases about 11% for Re=1000 with angle of attack 40°.
机译:对带有内置三角翼小翼的环形翅片管换热器的三维流动和传热进行了数值研究。三角形小翼型涡流发生器被放置在圆柱体附近的环形翅片表面上,用于增强热传递。小翼以共同的流动方向放置。由于前表面(面向气流)和后表面之间的压力差,纵向涡流沿着三角翼小翼的侧边缘发展。这些旋涡与热边界层相互作用,产生三维旋流,该旋流将近壁流体与中游相混合。因此,热边界层被破坏并且热传递被增强。对于通用流(CFU)配置,对四种不同的雷诺数(100、500和1000)和四种不同的迎角(35°,40°,45°,50°)进行了研究。发现当攻角为40°时,Re = 1000时,传热增加约11%。

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