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Optimum rib-rib spacing to enhance forced convection in the triangular duct with ribbed inner surfaces

机译:最佳肋骨间距,以增强带肋内表面的三角风道中的强制对流

摘要

An experimental investigation had been conducted on the forced convection of a fully developed turbulent flow in an air-cooled horizontal equilateral triangular duct. Uniformly spaced square ribs of the same size of 7.9mm were fixed on the triangular duct’s inner surfaces, orthogonal to the mean airflow. Effects of rib-to-rib spacing on the thermal performance of the duct had been studied and an optimum spacing was found corresponding to the maximum convection heat transfer. In the current study, the considered experimental triangular ducts of the same length and hydraulic diameter were fabricated with duralumin. The entire wall of the ducts was heated uniformly, while the outer wall was thermally insulated. The investigation had been conducted over a wide range of hydraulic diameter based Reynolds numbers (i.e. from 4,000 to 23,000). Nondimensional correlations for the determination of the heat transfer coefficients for such a thermal system had been developed from the experimental results.
机译:已对风冷水平等边三角形风管中完全展开的湍流的强迫对流进行了实验研究。 7.9毫米大小的均等间距的方形肋骨固定在三角形管道的内表面上,与平均气流正交。研究了肋骨到肋骨间距对管道热性能的影响,并找到了与最大对流传热相对应的最佳间距。在当前的研究中,用硬铝制造了相同长度和水力直径的实验三角形管道。管道的整个壁被均匀地加热,而外壁被绝热。这项研究是在广泛的基于雷诺数的水力直径范围内(即从4,000到23,000)进行的。从实验结果中得出了用于确定这种热系统传热系数的无量纲相关性。

著录项

  • 作者

    Luo DD; Leung CW; Chan TL;

  • 作者单位
  • 年度 2003
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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