技术简介:熔盐取样系统设计的保障性分析

IF 0.5 Q4 NUCLEAR SCIENCE & TECHNOLOGY
M. Harkema, Steven Krahn, Paul Marotta
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引用次数: 0

摘要

熔盐反应堆(MSR)设计所面临的安全保障挑战促使人们寻求更强的安全保障技术和经修订的安全保障材料控制与衡算(MC&A)方法。熔盐取样系统是一个正在开发的子系统,通过从 MSR 的主燃料和/或冷却剂盐回路中取出盐样品进行化学和同位素分析,帮助支持未来 MSR 的设施 MC&A。为了在设计过程中尽早考虑该熔盐取样系统的保障影响,我们在开发熔盐取样系统原型时采用了设计保障方法。具体来说,我们确定并定制了一种核对表方法,以根据公认的保障和安全属性对设计进行系统评估。本技术简介介绍了熔盐取样系统的设计和运行概念,我们在此基础上采用了 "按设计提供保障 "的方法,介绍了我们在熔盐取样系统设计中采用 "按设计提供保障 "的方法,并讨论了从 "按设计提供保障 "评估中获得的初步结果和设计见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Technical Brief: Safeguardability Analysis of a Molten Salt Sampling System Design
Challenges with safeguarding molten salt reactor (MSR) designs have prompted the search for enhanced safeguards technologies and revised safeguards materials control & accountancy (MC&A) approaches. A molten salt sampling system is a subsystem being developed to help support facility MC&A in future MSRs by removing salt samples from the primary fuel and/or coolant salt loop of an MSR for chemical and isotopic analysis. To consider the safeguards implications of this molten salt sampling system early in the design process, we employed a safeguards by design approach during the development of a prototype molten salt sampling system. Specifically, we identified and tailored a checklist approach to systematically evaluate the design against recognized safeguards and security attributes. This technical brief describes the molten salt sampling system design and operational concept upon which we applied the safeguards by design methodology, conveys the methods we used to employ the safeguards by design approach on the molten salt sampling system design and discusses the preliminary results and design insights gained from this safeguards by design assessment.
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来源期刊
CiteScore
1.30
自引率
0.00%
发文量
56
期刊介绍: The Journal of Nuclear Engineering and Radiation Science is ASME’s latest title within the energy sector. The publication is for specialists in the nuclear/power engineering areas of industry, academia, and government.
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