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Fracture Behavior in a Rock Pillar Subjected to Coupled Thermo-mechanical Loading

机译:热力耦合作用下岩石柱的断裂行为

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摘要

Using RFPA code, analyses have been carried out to investigate the stability of a rock pillar in a experiment for nuclear waste repositories, the numerically obtained stress field, temperature distribution, failure pattern of the pillar rock and associated AE events are all agree well with the in-situ data. Minor fracture initiation may take place in the vicinity of the boreholes after heating. Heating induces minor spalling at central pillar wall for 0.5m sections below the tunnel floor, but the area of spalling is found to be limited. The core of the pillar remains intact for stress conditions corresponding to 120 days of heating which not only prove that the proposed technique provides a powerfully alternative and effective approach for the study on thermal-mechanical-damage coupling mechanism but also provide meaningful guides for the experiment design and associated applications.
机译:使用RFPA代码,在核废料储存库实验中进行了分析,以研究岩石柱的稳定性,数值获得的应力场,温度分布,柱岩的破坏模式以及相关的AE事件均与地震波场相吻合。原位数据。加热后,在井眼附近可能会发生轻微的破裂。加热在隧道底板下方0.5m处的中心柱壁处引起较小的剥落,但发现剥落的面积有限。柱芯在受热120天的应力条件下仍保持完好无损,这不仅证明了所提出的技术为研究热-机械-损伤耦合机理提供了有力的替代方法和有效方法,而且为实验提供了有意义的指导设计和相关应用程序。

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