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Turbulent convection of air-cooled rectangular duct with surface-mounted cross-ribs

机译:带有表面交叉肋的风冷矩形风管的对流

摘要

Experimental and numerical studies were conducted to investigate the forced convection and flow friction of a turbulent airflow in a horizontal air-cooled rectangular duct, with square-sectioned cross-ribs mounted on its bottom surface. Cross-sectional dimensions of the cross-ribs were 6.37 mm × 6.37 mm. Reynolds number of the fully turbulent flow was maintained constant at 12,380. Heat was supplied uniformly to the airflow via bottom surface of the duct only. Effects of varying the angle formed by the cross-ribs between 30° and 120° on the forced convection and flow friction were studied. It was found that an optimum angle corresponding to the highest heat transfer coefficient occurred between 60° and 70°. Computational predictions of forced convection and flow friction of the same rectangular duct mounted with cross-ribs were performed with the zonal k-ε model, the stability-guaranteed second-order difference scheme and the block implicit method. A comparison with the experimental results indicated that a reasonably good agreement had been achieved. Existence of an optimum angle formed by the cross-ribs between 60° and 70° was also indicated, except the numerical predictions were lower than the experimental findings by approximately 2-10%. However, the flow friction had been slightly over-estimated by 2-11% with the numerical model. It was shown that forced convection could be enhanced sufficiently by mounting cross-ribs on the internal surfaces of a rectangular duct, especially when the optimum angle was used.
机译:进行了实验和数值研究,以研究水平风冷矩形管道中湍流的强迫对流和流动摩擦,并在其底面上安装了方形截面的交叉肋。横肋的横截面尺寸为6.37 mm×6.37 mm。完全湍流的雷诺数保持恒定在12,380。仅通过导管的底面将热量均匀地提供给气流。研究了在30°和120°之间改变交叉肋形成的角度对强制对流和流动摩擦的影响。发现与最高传热系数相对应的最佳角度出现在60°至70°之间。使用带区域k-ε模型,稳定性保证的二阶差分格式和块隐式方法,对装有交叉肋的同一矩形管道的强迫对流和流动摩擦进行了计算预测。与实验结果的比较表明已经达成了相当好的协议。还指出了由交叉肋在60°和70°之间形成的最佳角度的存在,除了数值预测比实验结果低了大约2-10%。然而,数值模型的流动摩擦力被高估了2-11%。结果表明,通过在矩形风管的内表面安装横肋可以充分增强强制对流,特别是在使用最佳角度的情况下。

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