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AP1000核电厂氢气点火器功能分析 被引量:11

Analysis of AP1000 Hydrogen Igniter Performance
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摘要 采用集总参数分析程序对AP1000核电厂安全壳内氢气点火系统功能进行了分析和验证。在定义的包络事故工况下,氢气最大瞬时释放速率达300kg/min。计算表明:在无点火措施情况下,AP1000安全壳局部隔间的氢气浓度较高,隔间内的气体处于可燃状态,且接近爆燃向爆炸转变(DDT)状态;在实施点火措施情况下,氢气浓度得到有效控制,氢气点火系统能消除严重事故下氢气所引起的风险。 A lumped parameter code was used to study the AP1000 hydrogen igniter system and demonstrate its performance. In the worst case defined in this paper, the maximum hydrogen release rate was up to 300 kg/min. The results show that, if no ignition is initiated, the hydrogen concentration in some compartment is very high, the gas is burnable and it may induce the deflagration to detonation transition (DDT). While igniters on, and the concentration is reduced below the lower flammable limits. These demonstrate that the igniter system can effectively reduce the risk of hydrogen in severe accident.
作者 林千 周全福
出处 《原子能科学技术》 EI CAS CSCD 北大核心 2012年第1期89-93,共5页 Atomic Energy Science and Technology
关键词 AP1000 氢气点火器 氢气燃烧 爆燃向爆炸转变 严重事故 AP1000 hydrogen igniter hydrogen combustion deflagration to detonation transition severe accident
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  • 1陈松,刘鑫,史国宝,朱鑫官,蔡剑平.严重事故下安全壳内环境条件计算分析[J].核动力工程,2006,27(z1):13-17. 被引量:13
  • 2方立凯,陈松,周全福.严重事故下核电站安全壳内氢气分布及控制分析[J].核动力工程,2006,27(z1):18-22. 被引量:16
  • 3张世顺,孙吉良,肖岷.大亚湾核电站安装氢气复合器方案计算分析[J].核动力工程,2005,26(S1):52-54. 被引量:5
  • 4国家核安全局.新建核电厂设计中几个重要安全问题的技术政策[R].北京:国家核安全局,2002.
  • 5TRAVIS J R,SPORE J W,ROYL P,et al.GASFLOW:A computational fluid dynamics code for gases,aerosols and combustion,volumn 1:theory and computational model[M].Karlsruhe:FzK,2001:41-42.
  • 6BREITUNG W.A mechanistic approach to safe igniter implementation for hydrogen mitigation[C]//Proceedings of the OECDNEACSNI Workshop on the Implementation of Hydrogen Mitigation Techniques.Manitoba:AECL,1996:199-218.
  • 7BREITUNG W.State-of-the-art report on flame acceleration and deflagration-to-detonation transition in nuclear safety at the group's final meeting[R].Karrlsruhe:FzK,1999.
  • 8REYNOLDS W C.The element potential method for chemical equilibrium analysis:Implementation in the interactive program STANJAN[R].California:Department of Mechanical Engineering Stanford University,1986.
  • 9BREITUNG W,ROYL P.Procedure and tools for deterministic analysis and control of hydrogen behavior in severe accidents[J].Nuclear Engineering and Design,2000,202:249-268.
  • 10Sehgal B R. Accomplishments and Challenges of the Severe Accident research[J]. Nuclear Engineering and Design, 2001, 210(1): 79-94.

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