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海洋平台应急机启动系统可靠性提升改造

Reliability Upgrading of Emergency Generator Startup System on Offshore Platform
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摘要 应急发电机组对启动系统稳定可靠性要求很高。某平台应急机启机测试失败,可记录主要原因为单独任意1套应急发电机组均不能实现应急机启动1次需求,同时蓄电池启动次数不足、控制器工作不稳定,针对上述问题对应急机启动系统进行可靠性提升改造,以确保应急机时刻处于可靠备用状态。 The emergency generator set has high requirements for the stability and reliability of the startup system.The main reasons for the failure of emergency generator start-up test of a certain platform can be recorded are that any single set of batteries cannot meet the need of emergency generator start-up once,the battery start-up times are insufficient,and the controller is unstable.In view of the above problems,the reliability upgrading of emergency generator start-up system is carried out to ensure that the emergency generator is in a reliable standby state at all times.
作者 高金虎 GAO Jinhu(Tianjin Branch,CNOOC<China>Ltd.,Tianjin 300459,China)
出处 《天津科技》 2021年第8期55-58,共4页 Tianjin Science & Technology
关键词 应急发电机 蓄电池 控制器 超级电容 emergency generator battery controller super-capacitor
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  • 1Vix-Guterl C, Saadallah S, Jurewicz K. Supercapacitor electrodes from new ordered porous carbonmaterials obtained by a templating procedure. Materials Science and Engineering B, 2004, 108(1/2): 148-155.
  • 2Zheng J P, Xin Y. Characterization of RuO2-xH2O with various water contents. Journal of Power Sources, 2002, 110(1): 86-90.
  • 3Gaudet J, Tavares A C, Trasatti S, et al. Physicochemical characterization of mixed RuO2-SnO2 solid solutions. Chemistry of Materials, 2005, 17(6): 1570-1579.
  • 4Zang J F, Bao S J, Li C M, et al. Well-aligned cone-shaped nanostructure of polypyrrole/RuO2 and its electrochemical supercapacitor. Journal of Physical Chemistry C, 2008, 112(38): 14843-14847.
  • 5Fang W C, Chen K H, Chen L C. Superior capacitive property of RuO2 nanoparticles on carbon nanotubes incorporated with nitrogen. Nanotechnology, 2007, 18(48): 5716-5720.
  • 6Sugimoto Wataru, Iwata Hideki, Yasunaga Yutaka, et al. Preparation of ruthenic acid nanosheets and utilization of its interlayer surface for electrochemical energy storage. Angew. Chem. Int. Ed, 2003, 42(34): 4092-4096.
  • 7Conway B E著. 陈 艾, 吴孟强, 张绪礼译. 电化学超级电容器—科学管理及技术应用. 北京: 化学工业出版社, 2005: 253-263.
  • 8Zhang S S, Xu K, Jow T R. Electrochemical impedance study on the low temperature of Li-ion batteries. Electrochim Acta, 2004, 49(7): 1057-1061.
  • 9DL/T 5044-2004.电力工程直流系统设计技术规程[S]..2004
  • 10Nuclear Power Engineering Committee.IEEE Recommended Practice for Sizing Lead-Acid Batteries for Stationary Applications. IEEE 485-1997 . 1997

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