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Focusing Schlieren Visualization of Transonic Turbine Tip-Leakage Flows

机译:跨音速涡轮叶尖泄漏流的聚焦Schlieren可视化

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This paper presents a focusing schlieren system designed for the investigation of transonic turbine tip-leakage flows. In the first part, the functional principle and the design of the system are presented. Major design considerations and necessary trade-offs are discussed. The key optical properties, e.g., depth of focus, are verified by means of a simple bench test. In the second part, results of an idealized tip-clearance model as well as linear cascade tests at engine representative Reynolds and Mach numbers are presented and discussed. The focusing schlieren system, designed for minimum depth of focus, has been found to be well suited for the investigation of three-dimensional transonic flow fields in turbomachinery applications. The schlieren images show the origin and growth of the tip-leakage vortex on the blade suction side. A complex shock system was observed in the tip region, and the tip-leakage vortex was found to interact with the suction side part of the trailing edge shock system. The results indicate that transonic vortex shedding is suppressed in the tip region at an exit Mach number around M 2 , i s = 0.8.
机译:本文提出了一种用于研究跨音速涡轮机叶尖泄漏流的聚焦摆线系统。第一部分介绍了系统的功能原理和设计。讨论了主要的设计注意事项和必要的权衡。关键的光学特性(例如焦点深度)通过简单的台式测试得以验证。在第二部分中,介绍并讨论了理想的叶尖间隙模型的结果以及在发动机代表雷诺数和马赫数下的线性级联测试。已经发现设计用于最小聚焦深度的聚焦摆线系统非常适合研究涡轮机械应用中的三维跨音速流场。 schlieren图像显示了叶片吸力侧的尖端泄漏涡流的起源和增长。在尖端区域观察到复杂的冲击系统,并且发现尖端泄漏涡旋与后缘冲击系统的吸力侧部分相互作用。结果表明,在靠近M 2的出口马赫数处,跨尖端的跨音速涡旋脱落得到抑制,即s = 0.8。

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