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Experimental investigation of heat transfer characteristics in a variable cross-sectioned two-pass channel with combined film cooling holes and inclined ribs

机译:结合膜冷却孔和斜肋的变截面双程通道传热特性的实验研究

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摘要

Heat transfer characteristics in variable cross-section two-pass channel with combined film cooling holes and ribs were studied experimentally. Rectangular ribs with an angle of 60° to the main flow roughened two opposite walls. The film cooling holes were distributed on the rib-roughened surfaces along the second pass. The relative roughness height was 0.123 and the relative roughness pitch was 12.5. The experiments were conducted under the Reynolds number range of 1.0 × 10~4-6.0 × 10~4. A series of experiments have been designed to explore how the exit mass flow rate effects on the heat transfer characteristics. Analysis of the experimental results may lead to the following conclusions, (1) with increasing the hole opening ratio, the heat transfer was enhanced while the exit mass flow rate keeping constant. (2) The flow resistance decreased with increasing the exit mass flow rate. (3) The relation between the exit mass flow rate and the Nusselt number was a quadratic function. (4) Different cooling hole locations produced different heat transfer effect.
机译:实验研究了变截面双通流道中薄膜冷却孔和肋的结合时的传热特性。与主流呈60°角的矩形肋使两个相对的壁变粗糙。膜冷却孔沿第二遍分布在肋粗糙表面上。相对粗糙度高度为0.123,相对粗糙度间距为12.5。实验是在雷诺数范围为1.0×10〜4-6.0×10〜4的条件下进行的。设计了一系列实验来探索出口质量流速如何影响传热特性。对实验结果的分析可能得出以下结论:(1)随着开孔率的增加,传热得到增强,出口质量流量保持恒定。 (2)流动阻力随着出口质量流量的增加而减小。 (3)出口质量流量与努塞尔数之间的关系是二次函数。 (4)不同的冷却孔位置产生不同的传热效果。

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