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首页> 外文期刊>Physics and chemistry of the earth >SELFRAC: Experiments and conclusions on fracturing, self-healing and self-sealing processes in clays
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SELFRAC: Experiments and conclusions on fracturing, self-healing and self-sealing processes in clays

机译:SELFRAC:黏土压裂,自修复和自密封过程的实验和结论

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In assessing the performance of a deep HLW repository, the evolution of the excavated damaged zone with time is a key issue. In the framework of SELFRAC fracturing, self-sealing and self-healing processes of Opalinus and Boom clay were studied in laboratory and in situ experiments. Definitions for the terms excavation damaged zone (EDZ), excavation disturbed zone (EdZ), sealing and healing are presented. It is shown that sealing and partial healing occur and the consequences of the results for performance assessment of HLW disposal in argillaceous rocks are discussed. The results of several in situ experiments and observations at the HADES underground research facility are detailed. The origin and extent of excavation induced fractures are discussed and sealing and (partial) healing of these fractures is demonstrated. In the description of the hydraulic features of the EdZ, the anisotropic pore pressure distribution around HADES and its evolution with time are discussed. Pore pressure is influenced several tens of metres into the host rock and its evolution is influenced by the anisotropic in situ stress state and the anisotropic hydraulic conductivity of Boom clay. Around the connecting gallery, an increase of hydraulic conductivity is measured up to about 6-8 m into the host rock, outside this influenced zone values between 4 x 10~(-12)m/s and 6 x 10~(-12)m/s were obtained. The highest value measured (close to the gallery) was of the order of magnitude of 10~(-11) m/s. The observed increase is caused by lower effective stress levels close to the gallery rather than by excavation induced fractures. Self-boring pressuremeter tests show that total stress is influenced up to 6-8 m into the host rock and material parameters such as undrained shear strength and shear modulus are influenced up to 2-3 m into the host rock. In situ seismic transmission measurements showed that the closure of a borehole influences the seismic parameters of the surrounding host rock: a decrease in seismic velocity is measured and higher frequencies disappear from the transmitted signals. After closure of the borehole, sealing of the damaged zone around it occurs, this is observed by the recovery of seismic velocity and the reappearance of higher frequencies. Fracture sealing is also demonstrated by seismic and hydraulic measurements on a reinstalled fractured clay core.
机译:在评估深层HLW仓库的性能时,挖掘的受损区域随时间的演变是一个关键问题。在SELFRAC压裂的框架内,在实验室和现场实验中研究了Opalinus和Boom粘土的自密封和自修复过程。介绍了术语“开挖损坏区”(EDZ),“开挖扰动区”(EdZ),密封和愈合的定义。结果表明,发生了封闭和部分愈合,并且讨论了结果对泥质岩中高放废物处置性能评估的结果。详细介绍了HADES地下研究设施的一些原位实验和观测结果。讨论了开挖引起的裂缝的起源和程度,并证实了这些裂缝的封闭和(部分)愈合。在描述EdZ的水力特征时,讨论了HADES周围的各向异性孔隙压力分布及其随时间的演变。孔隙压力受几十米的影响,并受到各向异性原地应力状态和动臂粘土各向异性水力传导率的影响。在连接通道周围,测量到进入岩体的水力传导率增加到大约6-8 m,在此影响区域值的4 x 10〜(-12)m / s和6 x 10〜(-12)之间获得了m / s。测得的最高值(接近通道)约为10〜(-11)m / s。观察到的增加是由于靠近通道的较低有效应力水平引起的,而不是由开挖引起的裂缝引起的。自钻孔压力计测试表明,总应力最多可影响6-8 m的岩体,而材料参数(如不排水的抗剪强度和剪切模量)最多可影响2-3 m的岩体。现场地震传输测量结果表明,井眼的封闭会影响周围岩体的地震参数:地震速度会降低,而较高的频率会从传输的信号中消失。井眼封闭后,井眼周围的损坏区域就会发生密封,这可以通过地震速度的恢复和更高频率的出现来观察到。裂缝密封还通过在重新安装的破裂粘土芯上进行地震和水力测量来证明。

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