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Steady State Thermal Analysis of the Pipe-Over Pack Container for Transuranic Waste at Los Alamos National Laboratory

机译:洛斯阿拉莫斯国家实验室的超铀废物用管道式包装容器的稳态热分析

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Los Alamos National Laboratory (LANL) Technical Area 55 (TA 55) utilizes several different container types to store and transfer special nuclear material and waste for numerous programs. The Nuclear Process Infrastructure - Infrastructure Operations Group (NPI-2) analyzes and certifies containers to meet the specifications for distinct processes and storage. Engineering analysis performed on these containers include but are not limited to: leak testing, filter efficiency testing, pressure drop test, drop testing, water penetration testing, polymer (o-ring) hardness testing, and thermal steady state testing. Of all of these tests, thermal steady state testing is most crucial to ensure critical components for specific containers do not fail under an internal heat payload. This testing provides data for setting heat payload limits for different containers. The Pipe Over-pack Container (POC) is a vented carbon steel container with a removable lid designed for storing or transferring nuclear waste. Additionally, TA 55 has been tasked to manage and store all of its Transuranic (TRU) waste for the foreseeable future. Being able to place more material into a single container conserves the physical storage space available at TA 55. The Pipe Over pack Handling and Operations Manual requires each user to ensure that the maximum temperature of each component in the POC is not exceeded. Conducting a thermal steady state test on the POC can benefit stakeholders on increasing the material limits of the container. The POC was loaded with sealed Plutonium (Pu-238) heat sources in a controlled laboratory environment. Thermistors attached were used to measure temperature behavior. The results of these measurements will establish new wattage limits to meet LANL's transportation requirements. The current LANL Transportation Safety Document (TSD) limits the amount of heat source plutonium to 10 grams per POC, corresponding to approximately 5 Watts of heat. The result of this test was provided to the Packaging and Transportation (OS-PT) group to evaluate new wattage limits that can satisfy the needs of TA 55, while maintaining a safe packaging configuration.
机译:洛斯阿拉莫斯国家实验室(LANL)技术区55(TA 55)利用几种不同的容器类型来存储和转移特殊的核材料和废料,用于众多计划。核过程基础设施-基础设施运营小组(NPI-2)对容器进行分析和认证,以符合不同过程和存储的规范。在这些容器上进行的工程分析包括但不限于:泄漏测试,过滤器效率测试,压降测试,压降测试,水渗透测试,聚合物(O形圈)硬度测试和热稳态测试。在所有这些测试中,热稳态测试对于确保特定容器的关键组件在内部热负荷下不会发生故障至关重要。该测试提供了用于设置不同容器的热负荷极限的数据。管道外包装容器(POC)是一种通风的碳钢容器,带有可移动的盖子,用于存储或转移核废料。此外,TA 55的任务是在可预见的将来管理和存储其所有超铀(TRU)废物。能够将更多的材料放入单个容器中,可以节省TA 55上可用的物理存储空间。《管道外包装处理和操作手册》要求每个用户确保不超过POC中每个组件的最高温度。在POC上进行热稳态测试可以使利益相关者受益于增加容器的材料极限。在可控制的实验室环境中,POC装有密封的((Pu-238)热源。连接的热敏电阻用于测量温度行为。这些测量结果将建立新的功率限值,以满足LANL的运输要求。当前的LANL运输安全文档(TSD)将热源p的数量限制为每个POC 10克,相当于大约5瓦的热量。该测试的结果已提供给包装和运输(OS-PT)组,以评估可以满足TA 55需求并保持安全包装配置的新功率限制。

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