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独立电力系统大容量爆炸式高速分断机构
引用本文:张利,郭泉,曾令东,戴超.独立电力系统大容量爆炸式高速分断机构[J].海军航空工程学院学报,2011,26(5):561-566.
作者姓名:张利  郭泉  曾令东  戴超
作者单位:1. 海军航窄工程学院七系,山东烟台,264001
2. 91515部队,海南三亚,572016
摘    要:大型舰船、洞库和地铁等独立电力系统对于供电的可靠性要求较高,但是短路电流大多难以分断,必须采取限流分断措施。文章针对上述场合的特殊环境,从温升和分断特性两个方面综合考虑,开展了爆炸桥式高速分断机构的研究,得到了机构关键参数的设计依据。在此基础上研制的380V/2500A机构样机额定通流最高温升为38.3K,分断时间为2...

关 键 词:独立电力系统  大容量  高速分断  温升

High-Capacity Explosive High-Speed Interrupted Mechanism for Independent Power System
ZHANG Li,GUO Quan,ZENG Ling-dong and DAI Chao.High-Capacity Explosive High-Speed Interrupted Mechanism for Independent Power System[J].Journal of Naval Aeronautical Engineering Institute,2011,26(5):561-566.
Authors:ZHANG Li  GUO Quan  ZENG Ling-dong and DAI Chao
Institution:ZHANG Li1,GUO Quan2,ZENG Ling-dong2,DAI Chao2
Abstract:The independent power system for large-scale ship, cavern and subway must be reliable and safe, but most fault current is too high to break. As a result, the fault current should be limited. In this paper, the thermoelectric coupling and nonlinear dynamics model was established and the affect of structural parameters was analyzed with on temperature rising and interrupting characteristics. Some optimized parameters were achieved through simulations. A 380V/2500A prototype had been developed for temperature rising and interrupting test. Test results showed that the temperature rise was 38.3K, the opening time was 2281as and an whole opening time was 10101as. The research conclusions could be used for reference to design high speed interrupter for higher capacity system.
Keywords:independent power system  high-capacity  high-speed interrupt  temperature rise
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