形孔几何参数化对淋浴喷头气膜冷却性能的影响

J. Moore, Christopher C. Easterby, D. Bogard
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引用次数: 0

摘要

涡轮叶片和叶片前缘区域的高热负荷需要最强大的热保护,通常通过密集的薄膜冷却孔阵列来完成,昵称为“淋浴头”。尽管研究表明,使用形孔的气膜冷却比使用圆柱形孔提供更可靠的热保护,但形状孔设计的几何细节变化对冷却性能的影响并没有很好地表征。在这项研究中,对两种形状的井眼几何形状进行了绝热有效性和壁外热场测量,这两种形状的井眼几何形状是之前研究中提出的基准井眼几何形状的后续设计。一种面积比增加40%的几何形状在绝热效率方面只有边际改善(约10%)。第二种设计具有12°的正向和侧向膨胀角,漏孔面积大40%,其性能略差于匹配的面积比对应(低约15%),表明对漏孔面积的负敏感性。与从圆柱形孔切换到形孔所获得的性能提升相比,不同形状孔设计的性能变化很小,这表明,只要外部冷却剂流动良好,冷却性能对特定形状孔的细节不敏感。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects on Film Cooling Performance in the Showerhead From Geometric Parameterization of Shaped Hole Designs
The high heat loads at the leading-edge regions of turbine vanes and blades necessitate the most robust thermal protection, typically accomplished via a dense array of film cooling holes, nicknamed the “showerhead.” Although research has shown that film cooling using shaped holes provides more reliable thermal protection than that using cylindrical holes, the effects on cooling performance from varying the geometric details of the shaped hole design are not well characterized. In this study, adiabatic effectiveness and off-the-wall thermal field measurements were conducted for two shaped hole geometries designed as successors to a baseline hole geometry presented in a previous study. One geometry with a 40% increase in area ratio exhibited only a marginal improvement in adiabatic effectiveness (∼10%). A second design with a 12° forward and lateral expansion angle with a breakout area 40% larger performed marginally worse than its matched area ratio counterpart (∼15% lower), suggesting a negative sensitivity to breakout area. Such changes in performance for different shaped hole designs were small compared to the boost in performance gained by switching from a cylindrical hole to a shaped hole, which suggests cooling performance is insensitive to specific shaped hole details provided the exterior coolant flow is well-attached.
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