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Optimum rib size to enhance forced convection in a horizontal triangular duct with ribbed internal surfaces

机译:最佳的肋骨尺寸可增强带肋内表面的水平三角风道中的强制对流

摘要

The optimum rib size to enhance heat transfer had been proposed through an experimental investigation on the forced convection of a fully developed turbulent flow in an air-cooled horizontal equilateral triangular duct fabricated on its internal surfaces with uniformly spaced square ribs. Five different rib sizes (B) of 5 mm, 6 mm, 7 mm, 7.9 mm and 9 mm, respectively, were used in the present investigation, while the separation (S) between the center lines of two adjacent ribs was kept at a constant of 57 mm. The experimental triangular ducts were of the same axial length (L) of 1050 mm and the same hydraulic diameter (D) of 44 mm. Both the ducts and the ribs were fabricated with duralumin. For every experimental set-up, the entire inner wall of the duct was heated uniformly while the outer wall was thermally insulated. From the experimental results, a maximum average Nusselt number of the triangular duct was observed at the rib size of 7.9 mm (i.e. relative rib size B/D = 0.1795). Considering the pressure drop along the triangular duct, it was found to increase almost linearly with the rib size. Non-dimensional expressions had been developed for the determination of the average Nusselt number and the average friction factor of the equilateral triangular ducts with ribbed internal surfaces. The developed equations were valid for a wide range of Reynolds numbers of 4,000 ReD 23,000 and relative rib sizes of 0.11≤ B/D ≤ 0.21under steady-state condition.
机译:通过对完全发展的湍流进行强制对流的实验研究,提出了最佳的肋尺寸,该强制对流是在内部均匀间隔开的方肋制成的风冷水平等边三角形风管中进行的。在本研究中,分别使用了5个不同的肋尺寸(B),分别为5 mm,6 mm,7 mm,7.9 mm和9 mm,而两个相邻肋的中心线之间的间距(S)保持在常数为57毫米。实验三角形风管的轴向长度(L)为1050毫米,水力直径(D)为44毫米。导管和肋骨均用硬铝制成。对于每个实验设置,均对管道的整个内壁进行均匀加热,同时对外壁进行隔热。根据实验结果,在肋骨尺寸为7.9mm(即,相对肋骨尺寸B / D = 0.1795)下观察到三角管的最大平均努塞尔数。考虑到沿三角管的压降,发现其随着肋的尺寸几乎呈线性增加。已经开发出无量纲表达式来确定带肋内表面的等边三角形管道的平均努塞尔数和平均摩擦系数。在稳态条件下,所开发的方程对于4,000

著录项

  • 作者

    Luo DD; Leung CW; Chan TL;

  • 作者单位
  • 年度 2004
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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