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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Effects of location, shape and width of a suction slot on the water removal performance of a hollow stator blade
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Effects of location, shape and width of a suction slot on the water removal performance of a hollow stator blade

机译:吸入槽的位置,形状和宽度对空心定子叶片的水移除性能的影响

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摘要

Experimental tests were implemented on a wet steam test rig to investigate the effects of location, shape and width of a suction slot on the water removal performance of a hollow stator blade. A straight cascade with varying outlet Mach numbers and suction pressure differences was used for the tests. The inlet flow conditions were consistent with the real running condition before the last stage stator of a 1000-MW nuclear steam turbine. Results show that the flow Mach number and suction pressure difference affect the amount of water removed. A moderate increase in the suction pressure difference triggers water film vaporisation, which decreases water removal performance. The amount of water removed continuously increases, as the slot location moves from 0.24 to 0.42 times the axial chord in the suction surface. Compared with the straight slot, the step-shaped slot cannot improve the water removal performance. On the contrary, the result is poor when the Mach number is above 0.7 because additional sharp corner leads to more serious water vaporisation. A suction slot with an arc-shaped inlet significantly improves the water removal performance by eliminating water film vaporisation under the test conditions. A 0.35-mm-width suction slot is apt to allow water film across, and a 2-mm-width suction slot cannot form an effective suction pressure difference along the slot height, both leading to poor water removal performance. Meanwhile, 0.7- and 1-mm-width suction slots promote good water removal performance, but the latter is less affected by water vaporisation.
机译:实验测试在湿蒸汽试验台上实施,以研究吸入槽的位置,形状和宽度对中空定子叶片的除水性能的影响。使用不同出口马赫数和吸力压力差的直级级级级级级级级级联用于测试。入口流动条件与1000 mW核汽轮机的最后级定子之前的真实运行状态一致。结果表明,流动马赫数和吸力压差影响除去的水量。吸入压力差的温和增加触发水膜蒸发,降低了除水性能。除了槽位置在抽吸表面中的轴向弦中移动的0.24至0.42倍,除去的水的量连续增加。与直槽相比,梯度形槽不能提高除水性能。相反,当Mach数量高于0.7时,结果差,因为额外的尖角导致更严重的水蒸发。具有弧形入口的吸入槽通过在试验条件下消除水膜蒸发而显着提高了水去除性能。 0.35mm宽度的吸入槽是易于允许水膜的,并且2毫米宽度吸入槽沿槽高度不能形成有效的吸入压力差,这两者都导致水去除性能不佳。同时,0.7-和1毫米宽的吸入槽促进了良好的水去除性能,但后者受水蒸发的影响较小。

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