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Safety and environmental analysis of the Compact Ignition Tokamak

机译:紧凑型点火托卡马克的安全和环境分析

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The Compact Ignition Tokamak (CIT) will use tritium as a fuel and produce sufficient high-energy neutrons to activate surrounding gases and structures. Features that have been incorporated into the design to enhance safety are discussed, and the safety and environmental analyses performed for the CIT are reviewed. Because the proposed location is near populated areas, radioactive inventories have been kept low to limit operational and accidental releases of radioactivity. Radioactive inventories include tritium in the fueling cycle, activated nitrogen in the magnet cooling system, activated gases in the test cell, and activated solids. Features intended to prevent or mitigate releases have been incorporated into the design of CIT. Operational releases have been estimated and their effect on the environment calculated. Accident scenarios have been identified using a risk-based approach that considers the probability as well as the consequence of the accidents. Accidents caused by equipment failures and shipping have been analyzed. Doses to the public have been calculated based on atmospheric dispersion measurements conducted at the Princeton site. These results are used to assess the adequacy of the design in meeting safety and environmental objectives and requirements.
机译:紧凑点火托卡马克(CIT)将使用tri作为燃料,并产生足够的高能中子来激活周围的气体和结构。讨论了已合并到设计中以增强安全性的功能,并审查了为CIT执行的安全性和环境分析。由于拟议的地点在人口稠密的地区附近,因此放射性库存一直保持较低水平,以限制放射性的运行和意外释放。放射性清单包括加油循环中的tri,磁体冷却系统中的活化氮,测试单元中的活化气体以及活化固体。旨在防止或减轻发布的功能已纳入CIT设计中。估计了操作释放量,并计算了其对环境的影响。已经使用基于风险的方法来识别事故场景,该方法考虑了事故的可能性以及后果。对由设备故障和运输引起的事故进行了分析。根据在普林斯顿场址进行的大气弥散测量值,计算了对公众的剂量。这些结果用于评估设计是否满足安全和环境目标及要求。

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