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Simulation of turbulent flow and forced convection in a triangular duct with internal ribbed surfaces

机译:内部带肋表面的三角形管道中的湍流和强迫对流的模拟

摘要

A three-dimensional problem of fully developed turbulent flow through an equilateral triangular duct with internal ribbed surfaces has been simulated numerically through two two-dimensional approaches: turbulent forced convection between two parallel plates with ribbed bottom surface and that in an equilateral triangular duct with smooth internal surfaces. Effects of the complicated geometry on the turbulent forced convection, as well as the formation of the secondary flows around the ribs and in the triangular duct's corners, are analyzed in detail. Comparisons between the calculated and experimental results have been carried out and it has been found that the geometry effect from the attached uniformly spaced ribs on the triangular duct's thermal performance is more significant than that from the duct's corners.
机译:通过两个二维方法,对通过内部带肋表面的等边三角形管道中充分发展的湍流的三维问题进行了数值模拟:两个带肋底表面的平行板之间的湍流强迫对流和具有光滑肋的等边三角形管道中的湍流强迫对流内部表面。详细分析了复杂几何形状对湍流强制对流的影响,以及在肋骨周围和三角风管角处二次流的形成。在计算结果和实验结果之间进行了比较,发现附着的均匀间隔的肋对三角管的热性能的几何影响要比对角管的几何影响更大。

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