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Study of rock damage caused by drill and blast excavation at the Research Tunnel at Olkiluoto

机译:Olkiluoto研究隧道钻探和爆破挖掘造成的岩石损伤研究

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Underground openings in rock excavated using drills and blasting technique are surrounded by a zone with altered properties. The zone can be a conduit for the transport of solutions and radionuclides in a nuclear waste repository. The porosity and microfracturing of the blast samples taken from the walls of the Research Tunnel at Olkiluoto in Eurajoki, Finland, were investigated using the ~(14)C-PMMA method. Scanning electron microscopy (SEM) and energy dispersive X-ray analysis (EDS) were used to investigate the pore apertures and minerals in porous regions in greater detail. A clear increase in porosity was observed to depths of 10- 30 mm from the surface of the half barrel of blast holes. Damage was observed in the rock texture as several fractures radial to the half barrel. The ~(14)C-PMMA method proved to be a practical and efficient tool for studying the extent and intensity of the damaged rock zone. It effectively filled the gap between macroscopic and microscopic investigation methods and provided quantitative information about nanometre-range porosity which is beyond the scope of most standard methods of microscopic investigation.
机译:使用钻头和爆破技术挖掘出来的岩石的地下开口被具有改变的特性的区域包围。该区域可以是用于在核废料库中运输溶液和放射性核素的导管。采用〜(14)C-PMMA方法研究了从芬兰欧约州欧约省欧约州欧若省研究隧道墙壁的孔隙率和微掩囊。扫描电子显微镜(SEM)和能量分散X射线分析(EDS)用于更详细地研究多孔区域中的孔隙孔和矿物质。观察到孔隙率的透明增加,从半桶的半桶的半桶的表面观察到10-30mm的深度。在岩石纹理中观察到损坏,因为几个骨折到半筒径向。 〜(14)C-PMMA方法证明是研究损坏岩区的程度和强度的实用和有效的工具。它有效地填充了宏观和微观调查方法之间的间隙,并提供了关于纳米范围孔隙度的定量信息,这超出了大多数标准调查方法的范围。

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