Research and Development of Rock Cavity Disposal Technology in China

Wencheng Yin, Yu-Djai. Pan, Xueling Zhang, Yu Liu, Jian Ma, Tongtong Li
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Abstract

Rock cavity disposal is regarded as a preferred option of radioactive waste final disposal solutions with less disturbance to surface and better isolation from people and surface environment which facilitates the long term surveillance and control of facility both during operation and after closure. This paper provides the research progress of key aspects of rock cavity disposal technology, such as site selection criteria, engineering design scheme of disposal vaults, technique process design of the handling of waste packages, research & development of intelligent control system and equipment of waste transportation, documentation of safety case and supporting safety assessment, numerical simulation of radionuclides migration process, and etc. The first practice of rock cavity disposal in China is also discussed. It shows that developing the rock cavity technology is reasonable, feasible and has significant potential in China. Finally, this paper looks forward to the research focus in the next stage. It is suggested to study the compatibility between the complexity level of engineering barrier measures and the waste hazards and to improve the reliability of future evolution and scenario assumption. The nuclides migration behavior study and migration parameter determination involving more key nuclides in waste from other origins are also of importance.
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中国岩洞处置技术的研究与发展
岩穴处置是放射性废物最终处置方案中对地表干扰较小、与人和地表环境隔离较好的一种选择,有利于设施运行期间和关闭后的长期监测和控制。本文介绍了岩洞处置技术的选址标准、处置拱顶工程设计方案、废弃物包装处理工艺流程设计、废弃物运输智能控制系统及设备研发、安全案例文件编制及配套安全评价、放射性核素迁移过程数值模拟等关键方面的研究进展。讨论了国内首次岩洞处置的实践。这表明在中国发展岩洞技术是合理可行的,具有很大的潜力。最后,对下一阶段的研究重点进行了展望。建议研究工程防护措施复杂程度与废弃物危害的相容性,提高未来演化和情景假设的可靠性。对其他来源核废料中涉及更多关键核素的核素迁移行为的研究和迁移参数的确定也很重要。
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