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首页> 外文期刊>Journal of turbomachinery >Detailed Flow and Heat Transfer Analyses in a Rib-Roughened Trailing-Edge Cooling Cavity With Impingement
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Detailed Flow and Heat Transfer Analyses in a Rib-Roughened Trailing-Edge Cooling Cavity With Impingement

机译:肋式粗糙化后缘冷却腔带冲击时的详细流动和传热分析

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摘要

A rig, simulating two adjacent cooling cavities on the trailing side of an airfoil, made up of two trapezoidal channels is tested. Eleven crossover holes on the partition wall between the two channels create the jets. Two exit flow arrangements are investigated (a) jets, after interaction with the target surface, are turned toward the target channel exit axially and (b) jets exit from a row of racetrack-shaped slots along the target channel. Flow measurements are reported for individual holes and heat transfer coefficients on the eleven target walls downstream the jets are measured using liquid crystals under steady-state conditions. Smooth as well as ribbed target surfaces with four rib angles are tested. Correlations are developed for mass flow rate through each crossover hole, varying the number of crossover holes. Heat transfer coefficient variations along the target channel are reported for a range of 5000-50,000 local jet Reynolds numbers. Major conclusions are: (1) Correlations are developed to successfully predict the air flow rate through each crossover hole for partition walls with six to eleven crossover holes, based on the pressure drop across the holes, (2) impingement heat transfer coefficient correlates well with local jet Reynolds number for both exit flow arrangements, and (3) case of target channel flow exiting from the channel end, at higher jet Reynolds numbers, produce higher heat transfer coefficients than those in the case of flow exiting through a row of slots along the target channel opposite to the crossover holes.
机译:测试了一个模拟机翼尾部的两个相邻冷却腔的装置,该装置由两个梯形通道组成。两个通道之间的分隔墙上有11个交叉孔,形成了喷流。研究了两种出口流的布置方式(a)与目标表面相互作用后,射流沿轴向朝向目标通道出口流动;(b)射流沿目标通道从一排跑道形槽中离开。报告了单个孔的流量测量结果,并且在稳态条件下使用液晶测量了射流下游11个目标壁上的传热系数。测试了具有四个肋角的光滑以及肋状目标表面。为通过每个分流孔的质量流量开发了相关性,从而改变了分流孔的数量。据报道,沿目标通道的传热系数变化范围为5000-50,000局部射流雷诺数。主要结论是:(1)建立了相关性,以根据跨孔的压降,成功地预测了穿过具有6至11个跨接孔的隔墙的每个跨接孔的空气流量;(2)碰撞传热系数与两种出口流量布置的局部射流雷诺数,(3)在较高的射流雷诺数下,目标通道流从通道端流出的情况产生的传热系数要高于通过一排缝隙沿出口流出的情况下的传热系数。与交叉孔相对的目标通道。

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  • 来源
    《Journal of turbomachinery》 |2019年第5期|051003.1-051003.9|共9页
  • 作者

    Xue Fei; Taslim Mohammad E.;

  • 作者单位

    Northeastern Univ, Mech & Ind Engn Dept, Boston, MA 02115 USA;

    Northeastern Univ, Mech & Ind Engn Dept, Boston, MA 02115 USA;

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  • 正文语种 eng
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