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Prebreakdown phenomena in transformer oil subjected to nonuniform fields

机译:非均匀磁场作用下的变压器油预击穿现象

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These investigations were conducted to record Schlieren photographs of the prebreakdown phenomena in transformer oil subjected to nonuniform fields at room temperature and atmospheric pressure. Various states of contamination were also studied. Positive and negative voltage polarities were used, and an estimate of the disturbance temperature was made by measuring changes in refractive index. Breakdown was initiated by disturbance channels propagating from the point electrodes; the positive-point disturbance being more filamentary and propagating much faster. The propagation rate increased when contaminated by solid particles, the effect being enhanced by prestressing. No significant change was detected with dissolved air or oxygen. However, when either gas was added to oil containing solid particles, the propagation rate tended to decrease after prestressing. The disturbances consisted of a liquid at a higher temperature than the surrounding bulk. It was suggested that the disturbances contained significant net space charge, which distorted the applied field and which was propagated by electron-collision processes. The effect of solid particles was explained by local field enhancement and the effect of prestressing by the motion of particles into or away from regions of strong field.
机译:进行这些研究是为了记录Schlieren在室温和大气压下经受不均匀场的变压器油中预击穿现象的照片。还研究了各种污染状态。使用正负电压极性,并通过测量折射率的变化估算干扰温度。击穿是由从点电极传播的干扰通道引发的。正点扰动更细,传播速度更快。当被固体颗粒污染时,传播速率增加,预应力增强了传播效果。溶解的空气或氧气未检测到明显变化。然而,当将任何一种气体添加到含有固体颗粒的油中时,预应力后的传播速率趋于降低。扰动由温度比周围物体高的液体组成。有人认为,这些扰动包含大量的净空间电荷,这会使施加的电场失真,并通过电子碰撞过程传播。固体颗粒的作用可以通过局部场增强来解释,而预应力的作用可以通过颗粒进入或离开强场区域的运动来实现。

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