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Numerical Investigation on the Fluid Flow and Heat Transfer in the Entrance Region of Wavy Channel

机译:波浪通道入口区流体流动和热传递的数值研究

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In this study, the fluid flow and heat transfer in the entrance region in a converging-diverging channel with sinusoidal wall corrugations are investigated. Numerical solutions are obtained using the control-volume finite-difference method. Development of the hydrodynamic, thermal fields, Nusselt number and viscous constraint are presented for different flow rates, wall corrugations severity and Prandtl number values. In the channel entrance zone, the viscous constraint tangential as well as the local Nusselt number are characterized by a very fast decrease and their amplitudes increase with increasing the wall corrugations and the Reynolds number. The periodicity character as well as the maximal velocity are influenced by variations of the rate corrugation and the Reynolds number.
机译:在该研究中,研究了具有正弦壁波纹的会聚发散通道中的进入区域中的流体流动和传热。使用控制体积有限差异方法获得数值溶液。出于不同的流速,壁波纹严重程度和普朗特数值,提出了流体动力学,热场,露天数和粘性约束的发展。在通道入口区中,粘性约束切线以及当地的纽带数量的特征在于,通过增加墙壁波纹和雷诺数,它们的幅度增加了很快。周期性字符以及最大速度受速率波纹和雷诺数的变化的影响。

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