高放废物处置罐抗震模型的研制

Y. Choi, C. Yoon, Hyun-Ah Kim, H. Choi
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引用次数: 0

摘要

在地下500 m深处,通过在基岩中开挖隧道,并放置高放废物处置筒作为周边形式,并放置缓冲材料,形成高放废物处置系统。根据大量的统计,韩半岛的地震呈每年增加的趋势。当发生地震时,岩体中的处置筒会因地下的剪切力而破裂。此外,放射性有害物质还可能引起严重的环境问题。本研究采用对地震进行安全防护的方法,研制了防震型缓冲材料。分析了影响其抗震性能的主要参数,设计了抗震型缓冲材料。建立了抗震型缓冲材料的剪切分析模型,并利用ABAQUS软件对其性能进行了评价。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of an Earthquake-Resistant Model for a High-Level Waste Disposal Canister
In the underground 500 m depth, the high level radioactive waste disposal system is made by boring the tunnel in the base rock and putting the high level waste disposal canister that is the surrounding form with the buffer material. According to the many statistics, it is the tendency that the earthquake increases in the Korean peninsula every year. In case that the earthquake is generated, the disposal canister in the rock mass can be broken due to the shearing force in the underground. Furthermore, a major environmental problems can be caused by the radioactive harmful substances. In this study, the earthquake-proof type buffer material was developed with the protection method safely on the earthquake. The main parameter having an effect on the earthquake-resistant performance was analyzed and the earthquake-proof type buffer material was designed. The shear analysis model was developed and the performance of the earthquake-proof type buffer material was evaluated by using ABAQUS.
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