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高压真空管绝缘外壳电荷分布的研究
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作者 Pogo.,MM 王文文 《真空电器技术》 1997年第3期18-23,共6页
关键词 高压真空器件 绝缘外壳 电荷分布 高压真空管
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A gravity heat pipe for high voltage vacuum interrupter 被引量:4
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作者 Xiao-ling YU Zhi-yuan LIU +3 位作者 Quan-ke FENG Yi-jiang WEI Ji-mei WANG Xiang-jun ZENG 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2009年第9期1305-1312,共8页
To enhance nominal current of high voltage vacuum circuit breakers (VCBs), a gravity heat pipe was proposed to replace stationary conducting rod of a high voltage vacuum interrupter. The heat pipe is composed of two... To enhance nominal current of high voltage vacuum circuit breakers (VCBs), a gravity heat pipe was proposed to replace stationary conducting rod of a high voltage vacuum interrupter. The heat pipe is composed of two coaxis tubes: the external tube is made of oxygen-free copper and the inner tube is made of stainless steel. The bottom end of the inner stainless steel tube is connected to the external copper tube by holes. Transient and static thermal performance of the heat pipe was measured, and the thermal resistance of it was compared with that of a solid copper rod with the same dimensions. Experimental results showed that thermal resistance of the heat pipe was about 1/3 of that of the copper rod, and it decreased slightly with the rising of the input heat flux. 3D thermal simulation on a 126 kV/2000 A single break VCB was done to compare the thermal performance between the proposed gravity heat pipe and the copper rod serving as the stationary conducting rod of the vacuum interrupter. Simulation results revealed that in the heat pipe case, the maximum temperature between contacts was 67 ℃ lower than that in the copper rod case. 展开更多
关键词 Heat pipe Vacuum circuit breakers (VCBs) Vacuum interrupters Nominal current Thermal simulation
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