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管理高中子和伽马辐射环境中的 NIF 安全设备。

Managing NIF safety equipment in a high neutron and gamma radiation environment.

机构信息

Lawrence Livermore National Laboratory, Livermore, CA 94551-9900, USA.

出版信息

Health Phys. 2013 Jun;104(6):589-96. doi: 10.1097/HP.0b013e31828d0156.

DOI:10.1097/HP.0b013e31828d0156
PMID:23629064
Abstract

The National Ignition Facility (NIF) is a 192 laser beam facility that supports the Inertial Confinement Fusion program. During the ignition experimental campaign, the NIF is expected to perform shots with varying fusion yield producing 14 MeV neutrons up to 20 MJ or 7.1 × 10(18) neutrons per shot and a maximum annual yield of 1,200 MJ. Several infrastructure support systems will be exposed to varying high yield shots over the facility's 30-y life span. In response to this potential exposure, analysis and testing of several facility safety systems have been conducted. A detailed MCNP (Monte Carlo N-Particle Transport Code) model has been developed for the NIF facility, and it includes most of the major structures inside the Target Bay. The model has been used in the simulation of expected neutron and gamma fluences throughout the Target Bay. Radiation susceptible components were identified and tested to fluences greater than 10(13) (n cm(-2)) for 14 MeV neutrons and γ-ray equivalent. The testing includes component irradiation using a 60Co gamma source and accelerator-based irradiation using 4- and 14- MeV neutron sources. The subsystem implementation in the facility is based on the fluence estimates after shielding and survivability guidelines derived from the dose maps and component tests results. This paper reports on the evaluation and implementation of mitigations for several infrastructure safety support systems, including video, oxygen monitoring, pressure monitors, water sensing systems, and access control interfaces found at the NIF.

摘要

国家点火装置(NIF)是一个拥有 192 束激光束的设施,支持惯性约束聚变计划。在点火实验活动期间,NIF 预计将执行不同聚变产量的实验,产生高达 20 兆焦耳或 7.1×10(18)个中子的 14 兆电子伏中子,每个实验的最大年产量为 1200 兆焦耳。在设施 30 年的寿命内,几个基础设施支持系统将暴露在不同的高产量射击中。为了应对这种潜在的暴露,已经对几个设施安全系统进行了分析和测试。已经为 NIF 设施开发了一个详细的 MCNP(蒙特卡罗 N-粒子传输代码)模型,该模型包括靶场内部的大部分主要结构。该模型已用于模拟整个靶场的预期中子和伽马通量。已经确定了易受辐射的组件,并对超过 10(13)(n cm(-2)) 的 14 MeV 中子和γ射线当量进行了测试。测试包括使用 60Co 伽马源进行组件辐照以及使用 4-MeV 和 14-MeV 中子源进行加速器辐照。设施中的子系统实施基于屏蔽后的通量估计值和从剂量图以及组件测试结果得出的生存能力准则。本文报告了对几种基础设施安全支持系统的缓解措施的评估和实施情况,这些系统包括在 NIF 中发现的视频、氧气监测、压力监测、水感测系统和访问控制接口。

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