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Failure Behavior of Granite Affected by Confinement and Water Pressure and Its Influence on the Seepage Behavior by Laboratory Experiments

机译:围压和水压对花岗岩破坏行为的影响及其对实验室渗流行为的影响

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Failure behavior of granite material is paramount for host rock stability of geological repositories for high-level waste (HLW) disposal. Failure behavior also affects the seepage behavior related to transportation of radionuclide. Few of the published studies gave a consistent analysis on how confinement and water pressure affect the failure behavior, which in turn influences the seepage behavior of the rock during the damage process. Based on a series of laboratory experiments on NRG01 granite samples cored from Alxa area, a candidate area for China’s HLW disposal, this paper presents some detailed observations and analyses for a better understanding on the failure mechanism and seepage behavior of the samples under different confinements and water pressure. The main findings of this study are as follows: (1) Strength reduction properties were found for the granite under water pressure. Besides, the complete axial stress–strain curves show more obvious yielding process in the pre-peak region and a more gradual stress drop in the post-peak region; (2) Shear fracturing pattern is more likely to form in the granite samples with the effect of water pressure, even under much lower confinements, than the predictions from the conventional triaxial compressive results; (3) Four stages of inflow rate curves are divided and the seepage behaviors are found to depend on the failure behavior affected by the confinement and water pressure.
机译:花岗岩材料的破坏行为对于处置高放废物(HLW)的地质处置库的主体岩石稳定性至关重要。破坏行为也会影响与放射性核素运输相关的渗流行为。很少有已发表的研究对约束和水压如何影响破坏行为进行了一致的分析,而破坏作用又反过来影响了岩石在破坏过程中的渗透行为。基于对中国高放废物处置候选地区Alxa地区的NRG01花岗岩样品进行的一系列实验室实验,本文提出了一些详细的观察和分析方法,以更好地了解不同限制条件下样品的破坏机理和渗流行为。水压力。这项研究的主要发现如下:(1)在水压下发现了花岗岩的强度降低特性。此外,完整的轴向应力-应变曲线在峰前区域表现出更明显的屈服过程,而在峰后区域表现出更逐渐的应力下降。 (2)与常规三轴压缩结果的预测相比,即使在低得多的限制下,受水压影响的花岗岩样品中更容易形成剪切破裂模式; (3)划分了四个阶段的入水率曲线,发现渗流行为取决于受约束和水压影响的破坏行为。

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