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Design of a Large Diameter Gallery for a Nuclear Waste Storage Project Application to the French Repository Project (CIGEO)

机译:法国核处置库项目(CIGEO)的核废料存储项目大口径画廊的设计

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The storage of nuclear waste gives rise to a lot of innovative issues for underground space technologies. The nuclear activity of waste generates temperature effects on both the lining and the surrounding rock mass. In order to avoid these unfavorable effects, the number of waste containers is controlled in the gallery section. The galleries section has consequently ranged from a diameter of 4 to 6 meters. However, in the case of intermediate-level nuclear waste, due to the lower temperature, the number of containers in a cross section of a gallery is assumed to be safely increased. Despite technical difficulties, a large diameter gallery (typically 12m excavated) seems to be more cost effective. This paper demonstrate the feasibility of such a gallery in the specific context of CIGEO (French Geological Repository Project for nuclear waste), located in the Bure area in the north-eastern of France. The geology of Bure at the project's depth (about 520 meters) consists in a quite homogeneous layer of Callovo-Oxfordian argillites (COx argillites). With such an overburden, this rock is known to have a high plastic behavior with significant time-dependent effects. These mechanical properties require complex behavior laws in computational modeling used for the design of underground facilities.
机译:核废料的储存引起了地下空间技术的许多创新问题。废物的核活动对衬砌和周围的岩体均产生温度影响。为了避免这些不利影响,在通道部分中控制了废物容器的数量。因此,画廊部分的直径范围为4至6米。但是,在中级核废料的情况下,由于温度较低,因此可以安全地增加通道横截面中的容器数量。尽管存在技术困难,但大直径的通道(通常开挖12m)似乎更具成本效益。本文展示了在法国东北部布尔地区的CIGEO(法国核废料地质处置库项目)的特定环境下建立这样一个画廊的可行性。 Bure在项目深度(约520米)处的地质构造是一个相当均匀的Callovo-Oxfordian泥质岩层(COx泥岩)。有了这样的覆盖层,人们就知道这种岩石具有很高的塑性,并且具有明显的时间依赖性。这些机械特性在用于地下设施设计的计算模型中要求复杂的行为定律。

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