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首页> 外文期刊>Journal of turbomachinery >Cooling the Tip of a Turbine Blade Using Pressure Side Holes—Part Ⅰ: Adiabatic Effectiveness Measurements
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Cooling the Tip of a Turbine Blade Using Pressure Side Holes—Part Ⅰ: Adiabatic Effectiveness Measurements

机译:使用压力侧孔冷却涡轮叶片的尖端-第一部分:绝热效率测量

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摘要

Durability of turbine blade tips has been and continues to be challenging, particularly since increasing turbine inlet temperatures is the driver for improving turbine engine performance. As a result, cooling methods along the blade tip are crucial. Film-cooling is one typically used cooling method whereby coolant is supplied through holes placed along the pressure side of a blade. The subject of this paper is to evaluate the adiabatic effectiveness levels that occur on the blade tip through blowing coolant from holes placed near the tip of a blade along the pressure side. A range of blowing ratios was studied whereby coolant was injected from holes placed along the pressure side tip of a largescale blade model. Also present were dirt purge holes on the blade tip, which is part of a commonly used blade design to expel any large particles present in the coolant stream. Experiments were conducted in a linear cascade with a scaled-up turbine blade whereby the Reynolds number of the engine was matched. This paper, which is Part 1 of a two part series, compares adiabatic effectiveness levels measured along a blade tip, while Part 2 combines measured heat transfer coefficients with the adiabatic effectiveness levels to assess the overall cooling benefit of pressure side blowing near a blade tip. The results show much better cooling can be achieved for a small tip gap compared with a large tip gap with different flow phenomena occurring for each tip gap setting.
机译:涡轮叶片尖端的耐久性一直并且继续是挑战性的,特别是因为增加涡轮入口温度是改善涡轮发动机性能的动力。结果,沿着叶片尖端的冷却方法至关重要。薄膜冷却是一种通常使用的冷却方法,通过该方法可以通过沿叶片压力侧放置的孔来提供冷却剂。本文的主题是评估通过从沿压力侧位于叶片尖端附近的孔中喷洒冷却剂而在叶片尖端产生的绝热有效性水平。研究了一系列的吹风比,从而从沿着大型叶片模型的压力侧尖端放置的孔中注入冷却剂。叶片尖端上还存在污物清除孔,这是常用的叶片设计的一部分,用于排出冷却剂流中存在的任何大颗粒。实验是使用放大的涡轮叶片以线性级联进行的,从而使发动机的雷诺数相匹配。本文是两部分系列的第1部分,比较了沿叶片尖端测量的绝热有效性水平,而第2部分将测得的传热系数与绝热有效性水平相结合,以评估靠近叶片尖端的压力侧吹气的总体冷却效果。结果表明,与较大的尖端间隙相比,对于较小的尖端间隙,可以实现更好的冷却,而每种尖端间隙设置都会出现不同的流动现象。

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