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首页> 外文期刊>Journal of turbomachinery >Performance Degradation due to Blade Surface Roughness in a Single-stage Axial Turbine
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Performance Degradation due to Blade Surface Roughness in a Single-stage Axial Turbine

机译:单级轴流涡轮机叶片表面粗糙度导致的性能下降

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摘要

Turbine blades experience significant surface degradation with service. Previous studies indicate that an order-of-magnitude or greater increase in roughness height is typical, and these elevated levels of surface roughness significantly influence turbine efficiency and heat transfer. This paper presents measurement and a mean-line analysis of turbine efficiency reduction due to blade surface roughness. Performance tests have been conducted in a low-speed, single-stage, axial flow turbine with roughened blades. Sheets of sandpaper with equivalent sandgrain roughnesses of 106 and 400 μm have been used to roughen the blades. The roughness heights correspond to foreign deposits on real turbine blades measured by Bans et al. In the transitionally rough regime (106 μm), normalized efficiency decreases by approximately 4% with either roughened stator or roughened rotor and by 8% with roughness on both the stator and rotor blades. In the fully rough regime (400 μm), normalized efficiency decreases by 2% with roughness on the pressure side and by 6% with roughness on the suction side. Also, the normalized efficiency decreases by 11% with roughness only on stator vanes, 8% with roughness only on rotor blades, and 19% with roughness on both the stator and rotor blades.
机译:涡轮叶片在使用过程中会经历明显的表面退化。先前的研究表明,粗糙度高度通常是一个数量级或更大的增加,并且这些增加的表面粗糙度水平显着影响涡轮效率和热传递。本文介绍了由于叶片表面粗糙度而导致的涡轮效率降低的测量值和均线分析。性能测试已在带有粗糙叶​​片的低速单级轴流式涡轮机中进行。已使用等效沙粒粗糙度分别为106和400μm的砂纸片来使刀片变粗糙。粗糙度高度对应于Bans等人测量的真实涡轮叶片上的异物沉积。在过渡粗糙状态(106μm)中,定子或转子变粗糙时,归一化效率降低约4%,而定子和转子叶片上的粗糙度均使归一化效率降低8%。在完全粗糙的状态下(400μm),归一化效率在压力侧随粗糙度降低2%,在吸力侧随粗糙度降低6%。同样,仅在定子叶片上具有粗糙度时,归一化效率降低了11%,仅在叶片上具有粗糙度时归一化效率降低了8%,在定子和转子叶片上均具有粗糙度时归一化效率降低了19%。

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