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Experimental Study on Effects of Slot Hot Blowing on Secondary Water Droplet Size and Water Film Thickness

机译:槽缝热吹对二次水滴尺寸和水膜厚度影响的实验研究

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摘要

The effects of the slot hot blowing of the hollow stator blades on the size of secondary water droplets and the thickness of the water film were experimentally investigated in this paper. The experiment was carried out on the turbine blade cascades in a wet air tunnel with an inlet air wetness fraction of 7.9%, an outlet air velocity of 170 m/s, a slot width of 1.0 mm, and a slot angle of 45 deg to blade surface. The Malvern droplet and particle size analyzer was utilized to measure the secondary water droplet size and distribution downstream of the hollow stator blades in the experimental tests. The experimental results show that the maximum diameter and Sauter mean diameter of the secondary water droplets were reduced greatly, and the water droplet size distribution became narrower. The larger blowing pressure difference resulted in the smaller secondary water droplets and the narrower water droplet size distributions. In addition, the efficiency of water separation from the hollow stator blade surfaces was higher for slot on the suction side than that of the pressure side case. Another simplified experimental test was also carried out on the flat plate to investigate the effect of slot hot blowing on the thickness of the water film downstream of the slot. The conductivity probes were used to measure the thickness of the water film downstream and upstream of the blowing slot. The results show that the slot hot blowing reduced the thickness of the water film downstream of the slot, which was affected by the blowing pressure difference and temperature difference between the hot blowing air and the main airflow. In conclusion, the slot hot blowing of the hollow stator blades has reduced the size of the secondary water droplets and secondarily has evaporated a little water film on the blade surfaces. Both effects are beneficial to reduce the erosion damage to the rotor blades.
机译:通过实验研究了中空定子叶片缝隙热吹对二次水滴尺寸和水膜厚度的影响。实验是在湿空气通道中的涡轮叶片叶栅上进行的,入口空气湿度分数为7.9%,出口空气速度为170 m / s,缝隙宽度为1.0 mm,缝隙角为45度。刀片表面。在实验测试中,使用马尔文液滴和粒度分析仪来测量次级液滴的大小和空心定子叶片下游的分布。实验结果表明,二次水滴的最大直径和索特平均直径大大减小,水滴尺寸分布变窄。较大的吹压力差导致较小的二次水滴和较窄的水滴尺寸分布。另外,在吸入侧的槽中,从中空的定子叶片表面分离水的效率比压力侧的情况高。还对平板进行了另一项简化的实验测试,以研究缝隙热吹对缝隙下游水膜厚度的影响。电导率探针用于测量吹塑槽下游和上游水膜的厚度。结果表明,狭缝热吹减小了狭缝下游水膜的厚度,这受到热吹空气与主气流之间的吹压力差和温度差的影响。总之,空心定子叶片的槽缝热吹减小了次级水滴的尺寸,其次,在叶片表面上蒸发了少许水膜。两种效果都有利于减少对转子叶片的腐蚀损害。

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    Institute of Turbomachinery, School of Energy and Power Engineering, Xi'an Jiaotong University, Xi'an 710049, China;

    Institute of Turbomachinery, School of Energy and Power Engineering, Xi'an Jiaotong University, Xi'an 710049, China;

    Institute of Turbomachinery, School of Energy and Power Engineering, Xi'an Jiaotong University, Xi'an 710049, China;

    Institute of Turbomachinery, School of Energy and Power Engineering, Xi'an Jiaotong University, Xi'an 710049, China;

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  • 正文语种 eng
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  • 关键词

    slot hot blowing; secondary water droplet; hollow stator blade;

    机译:插槽热吹二次水滴空心定子叶片;

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