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首页> 外文期刊>Rock Mechanics and Rock Engineering >Thermal, Mechanical and Thermo-Mechanical Assessment of the Rock Mass Surrounding SKB's Prototype Repository at A'spo HRL
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Thermal, Mechanical and Thermo-Mechanical Assessment of the Rock Mass Surrounding SKB's Prototype Repository at A'spo HRL

机译:A“ spo HRL周围SKB原型库周围岩体的热,机械和热机械评估

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The Prototype Repository (PR) was a field test of six, electrically heated, full-scale waste containers resembling the key component of a KBS-3 nuclear waste repository. The design and heat load was similar to the proposed repository at Forsmark, Sweden. In this paper, the thermal, mechanical and thermo-mechanical response of the PR host rock to excavation and to the subsequent heating is assessed. The assessment is carried out using three-dimensional models (numerical and analytical) in combination with monitoring data and visual observations from the excavations. Certain measurements and observations agree well with results from the models. These include temperature measurements during the heating phase. Additional measurements include patterns of low-magnitude acoustic emission events around the deposition holes tracked during the excavation. The spatial distribution of these events coincide with regions of modelled high compressive stresses. Models with a simple fracture network, consisting of planar disks with laboratory-scale properties, appear to give upper bound estimates of the stress disturbances caused by a real fracture network. The magnitude of the modelled stresses around the deposition hole is typically below the spalling strength. The lack of any significant or systematic occurrence of spalling in the deposition hole walls supports the modelling results. Several instruments installed at different positions to monitor stress change, strain and deformation malfunctioned during the nearly 8-year-long monitoring period. Despite this, there is ample evidence to support the overall conclusion that the modelling results and observations are in sufficient agreement to strengthen the confidence in the modelling approach.
机译:原型储存库(PR)是对六个电加热的大型垃圾容器进行的现场测试,这些容器类似于KBS-3核废物储存库的关键组件。设计和热负荷与瑞典Forsmark的拟议储存库相似。在本文中,评估了PR主体岩石对开挖和随后的加热的热,机械和热机械响应。评估是使用三维模型(数值模型和分析模型)与挖掘数据的监测数据和视觉观察相结合进行的。某些测量和观察与模型结果非常吻合。其中包括加热阶段的温度测量。其他测量包括在开挖期间跟踪的沉积孔周围的低震级声发射事件的模式。这些事件的空间分布与建模的高压缩应力区域一致。具有简单断裂网络的模型,包括具有实验室规模特性的平面磁盘,似乎可以给出由实际断裂网络引起的应力扰动的上限估计。沉积孔周围的模拟应力的大小通常低于散裂强度。在沉积孔壁中没有任何明显或系统性的剥落现象支持了建模结果。在将近8年的监测期内,安装在不同位置以监测应力变化,应变和变形的几台仪器出现故障。尽管如此,仍有足够的证据支持总体结论,即建模结果和观察结果在一致性方面足以增强对建模方法的信心。

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