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DEVELOPING DESIGN CRITERIA FOR SAFEGUARDS SEALS FOR SPENT FUEL TRANSPORTATION CASKS

机译:开发为废燃料运输桶的保护密封件的设计标准

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Current designs for spent fuel transportation casks cannot ensure a cask's integrity during shipment, nor is there any verifiable means of maintaining continuity of knowledge (CoK) on a cask's contents. Spent fuel destined for encapsulation plants or geological repositories requires additional containment and surveillance (C/S) measures during shipment. Following final safeguards accountancy measurements on spent fuel assemblies, the shipment of verified assemblies will require unprecedented reliance on maintaining CoK on the fuel inside transport casks. Such increased reliance is due to the lack of re-verification of spent fuel following encapsulation into disposal canisters and by meeting the requirement of dual C/S measures during such fuel shipments according to recommendations made by the Application of Safeguards to Geological Repositories (ASTOR) IAEA expert group. By designing spent fuel transportation casks with effective seals integrated into their design, CoK can be more effectively maintained than by ad hoc C/S measures because seal integration ensures that a cask has not been tampered with. Externally applied seals might not be able to provide such assurance for currently designed spent fuel transportation casks, although some combination of seals, detectors, and/or a technology that can verify canister integrity might provide this assurance. This paper examines the design criteria for integrating safeguards seals into transportation casks and provide recommendations for near-term applications.
机译:当前的花费燃料运输桶设计不能确保桶装在发货期间的完整性,也没有任何可验证的手段,可以在木桶内容上维护知识(COK)的连续性。注定用于封装植物或地质存储库的燃料需要在发货期间额外的遏制和监测(C / S)措施。继核燃料最终保障会计测量,验证组件出货量将需要运输木桶内的燃料保持COK空前的依赖。这种增加的依赖是由于在封装处理罐之后缺乏将燃料重新核断,并通过在根据“在地质存储库(Astor)的建议期间满足在此类燃料货物期间的双C / S措施的要求原子能机构专家组。通过设计具有有效密封件的花费燃料运输桶,可以更有效地维持比Ad Hoc C / S措施更有效地维持,因为密封集成可确保桶才被篡改。外部应用密封可能无法为当前设计的花费燃料运输桶提供这种保证,尽管密封件,探测器和/或可以验证罐诚信的技术的某些组合可能提供此保证。本文介绍了将保护素密封件集成到运输葫芦中的设计标准,并为近期应用提供建议。

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