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The characteristics of heat transfer and flow resistance in a rectangular channel with vortex generators

机译:带有涡流发生器的矩形通道中的传热和流阻特性

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The vortex generators (VGs) are among the most popular actuators for the heat transfer enhancement of heat exchangers. Using pure water as the working fluid, the characteristics of heat transfer and flow resistance in a rectangular channel with novel types of VGs were studied numerically at the Reynolds number range of Re = 8900-29,900. Five types of VGs with the same frontal area were used in the present study and the corresponding mechanism of heat transfer was analyzed. The heat transfer enhancement and flow resistance were examined by using the dimensionless parameters j/j_0, f/f_0, R = ( j/j_0)/( f/f_0). And R* = Nu_c/Nu_0. The results revealed that, when the thermohydraulic performance factor R and Performance Evaluation Criterion R* were considered as the comprehensive evaluation criteria, the half-cylinder VG was the best. Then the effects of arrangement, length, radius, and spacing of the half-cylinder VGs on the heat transfer and flow resistance were investigated. When the half-cylinder VGs were arranged along the side-lined row, the thermohydraulic performance factor R was the largest. With the increase in the generator length, the thermohydraulic performance factor R increased at first and then decreased, and exhibited the maximum value at A/B = 0.50. With the increase in the radius and decrease of the spacing, the thermohydraulic performance factor R decreased.
机译:涡流发生器(VG)是用于增强热交换器传热的最受欢迎的执行器之一。以纯水为工作流体,在雷诺数范围为Re = 8900-29,900的情况下,对新型VG矩形通道中的传热和流阻特性进行了数值研究。本研究使用了五种具有相同额叶面积的VG,并分析了相应的传热机理。通过使用无量纲参数j / j_0,f / f_0,R =(j / j_0)/(f / f_0)来检查传热增强和流动阻力。并且R * = Nu_c / Nu_0。结果表明,将热工液压性能系数R和性能评估标准R *视为综合评估标准时,半气缸VG最佳。然后研究了半圆柱VG的布置,长度,半径和间距对传热和流动阻力的影响。当半圆筒型VG沿着侧排的行排列时,热工液压性能系数R最大。随着发电机长度的增加,热工性能系数R先增大然后减小,并且在A / B = 0.50时呈现最大值。随着半径的增加和间距的减小,热工性能系数R减小。

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