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Effect of core size and ground surface on debris fields of failed electric bushings

机译:铁芯尺寸和接地表面对失效的电气套管碎片场的影响

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摘要

On occasion electrical bushings fail, sending fragments flying through the air. These fragments create a potential hazard for people and equipment within the debris throw area, which can extend to over 50 m. Experiments and a computer code were used to study two potential mitigation methods. In the first method, the bushing core size was reduced by placing five different nylon bars inside the bushings that filled 0,29,58, 71 and 82% of the core space. This resulted in a slight decrease in average fragment velocity from 55 to 40 ms~(-1) as the core fill increased from 0 to 82%. The resulting change in debris pattern of the fragments was not statistically significant. Hence using nylon cores will not mitigate the risks from fragments when a bushing fails. The second method studied the effect of surface type on the distance travelled by the bushing fragments. Studying grass and gravel surfaces, it was found that the fragments travelled a shorter distance on gravel (up to 45 m) than on grass (up to 75 m). The computer model required multiple bounces of the fragments to accurately model the debris field on grass. On gravel, however, the computer model gave the best predictions when it was assumed that fragments weighing less than 100g embedded in the gravel on their first impact. Hence the fragments are not travelling as far as they are being becoming caught in the gravel. Based on the results in this paper it is shown that a gravel ground surface will mitigate the distance travelled by fragments from a failed bushing.
机译:有时电气套管会失效,从而使碎片飞过空中。这些碎片会对碎片扔出区域内的人员和设备造成潜在危害,可能会延伸到50 m以上。实验和计算机代码用于研究两种潜在的缓解方法。在第一种方法中,通过在衬套内放置五个不同的尼龙棒来减小衬套芯的尺寸,该尼龙棒填充了芯空间的0、29、58、71和82%。随着岩心填充度从0%增加到82%,平均碎片速度从55 ms降低到40 ms〜(-1)。碎片碎片模式的最终变化在统计学上不显着。因此,当衬套失效时,使用尼龙芯不会减轻碎片带来的风险。第二种方法研究了表面类型对衬套碎片行进距离的影响。研究草和砾石表面后,发现碎石在碎石(最长45 m)上的移动距离比在草(最长75 m)上移动的距离短。计算机模型需要多次反弹碎片,以准确地模拟草地上的碎屑场。但是,如果假定重量小于100克的碎片在第一次撞击时嵌入砾石中,则计算机模型可以提供最佳的预测。因此,碎片没有被捕获到砾石中的距离移动。基于本文的结果,表明砾石地面将减轻碎裂衬套中碎片的行进距离。

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