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Implementation of a Pilot Course at Texas AM University on Designing Nuclear Security Systems

机译:德克萨斯州德克萨斯州设计核安保系统的试验课程

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In 2009, Texas A&M University (TAMU) began working with the Global Threat Reduction Initiative (GTRI) to perform voluntary upgrades to the security systems for the nuclear and radiological materials on campus. Those upgrades were successfully completed and a commitment was made by TAMU to maintain and periodically performance test the security system. As part of the GTRI upgrade process, it became apparent that typical nuclear engineering and health physics curricula do not instruct students on designing and evaluating nuclear security systems. This lack of basic education in this area lengthened much of the GTRI upgrade process since the personnel involved on site had to be educated "on the job". With help from Sandia National Laboratory (SNL), TAMU developed a pilot course on designing and evaluating nuclear security systems which was implemented as an undergraduate course in Spring 2011. The course had 19 students enrolled in it and covered the science and engineering associated with the design, evaluation, and implementation of systems to secure nuclear and radiological materials. The course material included characterization of the adversary, categorization of targets and the consequences associated with failure to protect those targets, detection and delay technologies, on-site and off-site response as well as different response strategies, evaluation of insider threats, mathematical methods for evaluating risk due to the threat and the security system design, and methods for risk minimization. Students completing this course should have a broad picture of nuclear security components and their interconnections into a sustainable nuclear security program.
机译:2009年,德克萨斯州A&M大学(TAMU)开始与全球威胁倡议(GTRI)合作,以对校园内核和放射材料的安全系统进行自愿升级。这些升级已成功完成,并通过TAMU进行承诺,以维持和定期执行安全系统。作为GTRI升级过程的一部分,显而易见的是,典型的核工程和健康物理课程不会指导学生在设计和评估核安全系统上。这种领域缺乏基础教育延长了大部分地区升级过程,因为涉及现场的人员必须被教育“在工作”中。在桑迪亚国家实验室(SNL)的帮助下,TAMU开发了一项关于核安保系统的试验课程,该核查课程在2011年春季实施为本科课程。课程有19名学生,并涵盖了与之相关的科学和工程系统的设计,评估和实施,以确保核和放射材料。课程材料包括对手的特征,对目标,分类以及与未能保护这些目标,检测和延迟技术,现场和非现场反应以及不同响应策略,评估内幕威胁,数学方法的后果用于评估由于威胁和安全系统设计而导致的风险,以及风险最小化的方法。完成本课程的学生应掌握核安全组件及其互连进入可持续核安全计划。

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