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首页> 外文期刊>Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow >Use of pressure-sensitive paint for diagnostics in turbomachinery flows with shocks
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Use of pressure-sensitive paint for diagnostics in turbomachinery flows with shocks

机译:使用压敏涂料进行涡轮机械冲击诊断

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The technology of pressure-sensitive paint (PSP) is well established in external aerodynamics. In internal flows in narrow channels and in turbomachinery cascades, however, there are still unresolved problems. In particular, the internal flows with complex shock structures inside highly curved channels present a challenge. It is not always easy and straightforward to distinguish between true signals and 'ghost' images due to multiple internal reflections in narrow channels. To address some of the problems, investigations were first carried out in a narrow supersonic channel of Mach number 2.5. A single wedge or a combination of two wedges was used to generate a complex shock wave structure in the flow. The experience gained in a small supersonic channel was used for surface pressure measurements on the stator vane of a supersonic throughflow fan. The experimental results for several fan operating conditions are shown in a concise form, including performance map test points, midspan static tap pressure distributions, and vane suction side pressure fields. Finally, the PSP technique was used in the NASA transonic flutter cascade to compliment flow visualization data and to acquire backwall pressure fields to assess the cascade flow periodicity. Lessons learned from this investigation and shortcomings of the PSP technology for internal flow application are presented in the conclusion of the paper. [References: 19]
机译:压敏涂料(PSP)的技术在外部空气动力学方面已广为接受。但是,在狭窄通道内的内部流动和涡轮机械叶栅中,仍然存在未解决的问题。特别地,在高度弯曲的通道内部具有复杂冲击结构的内部流动提出了挑战。由于狭窄通道中的多次内部反射,区分真实信号和“重影”图像并不总是那么容易和直接。为了解决一些问题,首先在马赫数为2.5的狭窄超音速通道中进行了研究。使用单个楔形或两个楔形的组合在流中生成复杂的冲击波结构。在超音速小型通道中获得的经验用于超音速通风扇的定子叶片上的表面压力测量。以简洁的形式显示了几种风扇运行条件的实验结果,包括性能图测试点,中跨静态抽头压力分布和叶片吸入侧压力场。最后,将PSP技术用于NASA跨音速颤振级联中,以补充流动可视化数据并获取后壁压力场,以评估级联流动的周期性。本文的结论介绍了从这次调查中学到的教训以及PSP技术在内部流应用中的不足。 [参考:19]

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