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首页> 外文期刊>IEEE Transactions on Electrical Insulation >Breakdown behavior of cryogenic liquids in the presence of thermal bubbles under ramped voltage
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Breakdown behavior of cryogenic liquids in the presence of thermal bubbles under ramped voltage

机译:在倾斜电压下存在热气泡的情况下低温液体的分解行为

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摘要

V-t characteristics were measured and the thermal bubble deformation was observed in liquid nitrogen and helium with a ramped voltage, simulating the quenching conditions in large superconducting magnet coils. From the experimental results, the breakdown process of liquid coolants in the presence of thermal bubbles was classified into three categories depending on the voltage slope: (1) breakdown through a composite insulation system of undeformed bubbles and surrounding cryogenic liquid with fast rising voltage such as the standard lightning impulse voltage; (2) breakdown through a strongly elongated bubble by an electric field with the rise time of milliseconds; and (3) breakdown through a vapor bridge of the gap, formed by growth of a bubble fixed on an electrode with a hot spot, by electric fields rising in approximately 100 ms.
机译:测量了V-t特性,并在液氮和氦气中以倾斜电压观察了热气泡变形,模拟了大型超导磁体线圈中的淬火条件。从实验结果来看,在存在气泡的情况下,液体冷却剂的击穿过程根据电压斜率可分为三类:(1)通过未变形气泡和周围快速冷却的低温液体(例如)的复合绝缘系统击穿标准雷电冲击电压; (2)通过电场以毫秒为单位的上升沿强烈拉长的气泡击穿; (3)通过在约100ms内上升的电场通过固定在具有热点的电极上的气泡的生长而形成的间隙的蒸气桥击穿。

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