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Effect of water streams on the AC breakdown performance of short rod-plane air gaps

机译:水流对短杆平面空气间隙交流击穿性能的影响

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摘要

The ac breakdown performance of rod-plane air gaps in the presence of water streams has been explored. Experimental results show that the ac breakdown voltage of rodplane short air gaps in the presence of a water stream is significantly lower than in the dry condition. In addition, the ac breakdown voltage of an air gap decreases with the increase of the water stream velocity, diameter and conductivity. The relative breakdown voltage of an air gap decreases with an increase of water stream velocity from 0.75 m/s to 1.79 m/s and nozzle diameter from 1.0 mm to 3.0 mm by 2.6%/0.1 m/s and 0.8%/0.1 mm, respectively. High speed images of the deformation of the water stream and the breakdown process of air gap are reported show that with the increase of the applied voltage, the critical break-up length and the size of main water droplets decrease. In addition, the effect of the electrical field on the break-up length of a water stream and the size of droplets are independent of the jet velocity. © 2014 IEEE.
机译:探讨了水流存在下杆面空气隙的交流击穿性能。实验结果表明,水流存在下索珠式短空气间隙的交流击穿电压显着低于干燥条件。另外,气隙的AC击穿电压随着水流速度,直径和导电性的增加而降低。气隙的相对击穿电压随着0.75米/秒的0.75m / s至1.79m / s的水流速度的增加而降低,喷嘴直径为1.0 mm至3.0 mm,×2.6%/ 0.1 m / s和0.8%/ 0.1mm,分别。报道了水流变形的高速图像和气隙的击穿过程,以施加的电压的增加,临界分解长度和主水滴的尺寸减小。另外,电场对水流的分解长度和液滴尺寸的影响与喷射速度无关。 ©2014 IEEE。

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