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Safety systems and access control in the national ignition facility

机译:国家点火设施中的安全系统和访问控制

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The National Ignition Facility (NIF) is the world's largest and most energetic laser system. The facility has the potential to generate ionizing radiation due to the interaction between the laser beams and target material, with neutrons and gamma rays being produced during deuterium-tritium fusion reactions. To perform these experiments, several types of hazards must be mitigated and controlled to ensure personnel safety. NIF uses a real-time safety system to monitor and mitigate the hazards presented by the facility. The NIF facility Safety Interlock System (SIS) monitors for oxygen deficiency and controls access to the facility preventing exposure to laser light and radiation from the Radiation Generating Devices. It also interfaces to radiation monitoring and other radiological monitoring and alarm systems. The SIS controls permissives to the hazard-generating equipment and annunciates hazard levels in the facility. To do this reliably and safely, the SIS has been designed as a fail-safe system with a proven performance record now spanning over 10 y. This paper discusses the SIS, its design, implementation, operator interfaces, validation/verification, and the hazard mitigation approaches employed in the NIF. A brief discussion of the Failure Modes and Effect Analysis supporting the SIS will also be presented. The paper ends with a general discussion of SIS do's and don'ts and common design flaws that should be avoided in SIS design.
机译:国家点火设施(NIF)是世界上最大,最能充电的激光系统。该设施具有由于激光束和靶材料之间的相互作用而产生电离辐射,中子和γ射线在氘融合反应期间产生。为了进行这些实验,必须减轻几种类型的危险,以确保人员安全。 NIF使用实时安全系统来监测和减轻设施所呈现的危险。 NIF设施安全互锁系统(SIS)监视器用于缺氧,并控制进入设施,防止从辐射产生装置接触激光和辐射。它还还可以界面到辐射监测和其他放射线监测和报警系统。 SIS控制危险发电设备的允许,并向设施中的危险水平通时。为可靠而安全地进行此操作,SIS被设计为故障安全系统,具有验证的性能记录,现在跨越10 y。本文讨论了SIS,其设计,实施,操作员界面,验证/验证以及NIF中使用的危险缓解方法。简要讨论支持SIS的故障模式和效果分析。本文以SIS设计的一般性讨论为止,在SIS设计中应该避免的讨论和不干涉和常见的设计缺陷。

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