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首页> 外文期刊>International Journal of Heat and Mass Transfer >Turbine vane endwall film cooling from mid-chord or downstream rows and upstream coolant injection
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Turbine vane endwall film cooling from mid-chord or downstream rows and upstream coolant injection

机译:涡轮叶片端壁膜从中弦或下游排冷却,并向上游注入冷却液

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摘要

Endwall film cooling investigations were carried out in a four-passage linear turbine vane cascade. The endwall film cooling is designed with two cooling-hole configurations: the mid-chord row and the downstream row. Two-row of staggered cylindrical holes in front of the vane leading edge is implemented for providing the upstream coolant injection. In this study, the injection angle of the upstream cooling hole and the endwall cooling hole are fixed at 30 degrees. The mainstream Reynolds number at the cascade inlet is measured at 380,000 based on the vane axial chord length, and the corresponding cascade exit Ma number is 0.5. The turbulence intensity at the mainstream inlet is kept at 19% with an integral length scale of 1.7 cm. The mass flow rate of the coolant for upstream injection and the endwall injection are varying from MFR = 0, 0.5%, 1.0% to 1.5% respectively to optimize the coolant distribution. The coolant-to-mainstream density ratio effects are investigated by feeding three different coolants with DR = 1.0, 1.5 and 2.0. The film cooling effectiveness on the endwall is determined by using the PSP measurement technique. Results will provide useful information about the endwall cooling design with the mid-chord row and downstream row, especially on how to distribute the coolant consumption from the upstream or the endwall locations, which efficiently saves the coolant. (C) 2018 Elsevier Ltd. All rights reserved.
机译:端壁膜冷却研究是在四通道线性涡轮叶片级联中进行的。端壁薄膜冷却系统设计有两个冷却孔配置:中弦排和下游排。在叶片前缘的前面有两排交错的圆柱孔,用于提供上游冷却液注入。在这项研究中,上游冷却孔和端壁冷却孔的喷射角固定为30度。根据叶片轴向弦长,测得叶栅入口处的主流雷诺数为380,000,相应的叶栅出口Ma数为0.5。主流入口处的湍流强度保持在19%,整体长度刻度为1.7 cm。用于上游喷射和端壁喷射的冷却剂的质量流率分别从MFR = 0、0.5%,1.0%到1.5%变化,以优化冷却剂分配。通过给三种不同的DR = 1.0、1.5和2.0的冷却剂进料,研究了冷却剂与主流密度比的影响。通过使用PSP测量技术确定端壁上的薄膜冷却效率。结果将提供有关中弦排和下游排的端壁冷却设计的有用信息,尤其是如何分配上游或端壁位置的冷却剂消耗量,从而有效地节省冷却剂。 (C)2018 Elsevier Ltd.保留所有权利。

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