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DEVELOPMENT OF A U.S. NUCLEAR WASTE REPOSITORY RESEARCH PROGRAM IN SALT

机译:盐中美国核废料库研究计划的开发

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With the United States rethinking its strategy for the management and disposal of defense high-level radioactive waste and civilian used nuclear fuel (UNF), it is an opportune time to evaluate the near-term and long-term options and requirements for the U.S. geologic repository program. In this paper, we outline a research program investigating the behavior of salt when subjected to thermal loads like those that would be present in a high-level-waste (HLW) repository. This program builds upon the knowledge base developed as a result of previous repository program efforts and the successful licensing and operation of the Waste Isolation Pilot Project Transuranic waste repository. We present a preliminary evaluation of a conceptual repository design that, in principle, exploits the positive attributes of salt as a disposal medium while balancing heat management issues against other considerations such as efficiency of disposal oper-ations and cost. The coupled thermal-mechanical behavior of the intact and crushed salt, which influences and is influenced by the liberation and movement of water present in the salt and hydrous minerals, will ultimately control the thermal and hydrochemical conditions in the repository and at the waste package. To address key scientific issues, we advocate a combination of laboratory-scale investigations, a thermal test in the field for a configuration that replicates a small portion of our conceptual repository design, and numerical simulations conducted to develop a validated model that can be used for future repository design or performance assessment purposes. Accompanying this testing program would be a broader set of investigations that we advocate be conducted in the context of an iterative and adaptive process for systematically reducing uncertainties as we build a science-based safety case for HLW disposal in salt.
机译:随着美国重新考虑其国防高级放射性废物和民用核燃料(UNF)的管理和处置战略,现在是评估美国地质学近期和长期选择及要求的适当时机存储库程序。在本文中,我们概述了一个研究程序,该程序研究盐在热负荷下的行为,例如在高级废物(HLW)储存库中会出现的热负荷。该程序基于先前的存储库计划工作以及废物隔离试点项目Transuranic废物存储库的成功许可和运营而开发的知识库。我们对概念性储存库设计进行了初步评估,该储存库设计原则上利用盐作为处置介质的积极特性,同时在热量管理问题与其他考虑因素(例如处置操作的效率和成本)之间取得平衡。完整盐和压碎盐的耦合热机械行为会影响盐和含水矿物中存在的水的释放和运动并受其影响,最终将控制储存库和废物包装中的热化学条件和水化学条件。为了解决关键的科学问题,我们提倡将实验室规模的研究,在现场进行的热测试(该配置可以复制我们的概念性存储库设计的一小部分)和进行数值模拟以开发可用于以下目的的经过验证的模型结合起来:将来的存储库设计或性能评估目的。伴随此测试计划,我们将提倡更广泛的研究,我们建议在迭代和自适应过程的背景下进行,以系统地减少不确定性,因为我们建立了以科学为基础的盐分高放废物处置安全案例。

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