首页> 外文期刊>Bulletin of engineering geology and the environment >Combined effects of blasting and geological structure on rock mass stability-a case study from the Marrakech-Agadir highway, Morocco
【24h】

Combined effects of blasting and geological structure on rock mass stability-a case study from the Marrakech-Agadir highway, Morocco

机译:爆破与地质结构对岩体稳定性的综合影响-以摩洛哥马拉喀什-阿加迪尔高速公路为例

获取原文
获取原文并翻译 | 示例
       

摘要

The Marrakech-Agadir highway crosses mountainous areas of the Western High Atlas of Morocco with a high risk of slope instability. The use of explosives as an excavation method, especially at kilometric point 33 on the Imintanout-Argana section, has triggered major ruptures. The regional geological setting, together with the lithological and structural characteristics of the rock mass, represent the major factors influencing this operation where the degree of disturbance is estimated as 0.82. The studied slope is located along the trajectory of a submeridian fault corridor remobilised because of blasting during excavation works. This slope reveals instabilities associated with tectonic planes (F-1 and F-2) and/or bedding (S-0) and the presence of argillites and siltstones that coincide with bedding. These unconsolidated layers, inclined in the direction of excavation, act as slide planes. Structurally, the Pk33 slope can be subdivided into three zones depending on the displacement type being recorded and may be a fortiori related to the geomechanical properties of the substrate. The rheological characteristics of zones B and C, highly fractured and with low competence, respectively, explain their relatively different displacement patterns from that of zone A. The maximum instantaneous explosive load used for offloading the upper part of the sliding mass has been estimated in order to increase the safety factor for the instable slope.
机译:马拉喀什-阿加迪尔高速公路横穿摩洛哥西部高地图集的山区,坡度不稳定的风险很高。使用炸药作为挖掘方法,特别是在伊明塔努特-阿加纳河段的33公里处,引起了重大的破裂。区域地质环境以及岩体的岩性和结构特征是影响该作业的主要因素,干扰程度估计为0.82。研究的边坡位于因开挖过程中的爆破而被拆除的子午断层走廊的轨迹上。该斜率揭示了与构造平面(F-1和F-2)和/或层理(S-0)相关的不稳定性,以及与层理相吻合的泥质和粉砂岩的存在。这些未固结的层在开挖方向上倾斜,充当滑动面。在结构上,根据所记录的位移类型,Pk33斜率可细分为三个区域,并且可能是与基材的地质力学特性有关的重要因素。 B区和C区的流变特性分别是高度断裂和低能力的,这解释了它们与A区相对不同的位移模式。按顺序估算了用于卸载滑动块上部的最大瞬时爆炸载荷增加不稳定斜坡的安全系数。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号