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TURBINE VANE ENDWALL FILM COOLING FROM CROSS-ROW CONFIGURATION WITH SIMULATED UPSTREAM LEAKAGE FLOW

机译:涡轮叶片端壁薄膜从横划线配置冷却,模拟上游泄漏流动

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The performance of a full coverage film cooling configuration called cross-row (CR) configuration including upstream inlet leakage flow was studied by measuring the adiabatic film cooling effectiveness distribution using PSP technique. Experiments were conducted in a blow-down wind tunnel cascade facility at the isentropic exit Mach number of 0.5 corresponding to inlet Reynolds number of 3.8 × 10~5, based on axial chord length. A free-stream turbulence level was generated as high as 19% with a length scale of 1.7 cm at the inlet. The results are presented as two-dimensional adiabatic film cooling effectiveness distributions on the endwall surface with corresponding spanwise averaged distributions. The focus of this study is to investigate the effect of coolant-to-mainstream mass flow ratio (MFR) and density ratio (DR) on the proposed endwall cooling design. Initially, increased MFR for the endwall cooling and upstream leakage levels up the local adiabatic cooling effectiveness and yields relatively uniform coverage on the entire endwall. However, in either case, highest MFR does not provide any improvement as endwall cooling suffered from the jet lift-off and leakage coolant coverage restricted by the downstream near-wall flow field. Results also indicated a density ratio of 1.5 provides the best performance. Finally, a fair comparison is made with another design called axial-row (AR) configuration from a companion paper.
机译:通过使用PSP技术测量绝热膜冷却效果分布,研究了包括上游入口泄漏流的横行(Cr)配置的完整覆盖膜冷却配置的性能。基于轴向弦长,在对应于入口雷诺数为3.8×10〜5的入口雷诺数的禁止风隧道级联设施中进行实验。自由流湍流水平高达19%,入口处为1.7厘米的长度。结果在端壁表面上呈现为二维绝热膜冷却效果分布,具有相应的始线平均分布。本研究的重点是探讨冷却剂 - 主流质量流量比(MFR)和密度比(DR)对所提出的端壁冷却设计的影响。最初,用于端壁冷却的MFR增加和上游泄漏水平升高局部绝热冷却效果,并在整个端壁上产生相对均匀的覆盖。然而,在任何一种情况下,最高的MFR都没有提供任何改进,因为端壁冷却遭受射流剥离和被下游近壁流场限制的泄漏冷却剂覆盖物。结果还表示密度比为1.5提供最佳性能。最后,使用来自伴随纸的另一个名为轴向(AR)配置的另一个设计进行了公平的比较。

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