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首页> 外文期刊>Bulletin of engineering geology and the environment >Complex rock slope deformation at Laxiwa Hydropower Station, China: background, characterization, and mechanism
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Complex rock slope deformation at Laxiwa Hydropower Station, China: background, characterization, and mechanism

机译:距离中国距离兰湖水电站的复杂岩石斜坡变形:背景,表征和机制

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摘要

An unstable rock slope called the Guobu landslide, observed in granite with a maximum cumulative displacement of 45m, located on the upper stream of the dam of the Laxiwa Hydropower Station, China, and directly threatening the safety of the dam and the people living downstream, was investigated. Detailed field surveys, geological structure investigations, remote sensing image analysis, and GPS displacement monitoring were carried out to investigate the deformation characteristics of the slope after reservoir impoundment, historical deformation, ancient landslide reactivation, the influence factors of the large deformation of the slope, and the mechanism. Based on the results of the above analyses, it was seen that there is a clear geological structural dependence of the failure mechanisms in the study area, and that the complex failure mechanisms include toppling, subsiding wedge failure, rockfalls, and tension cracking in deep-seated rock masses. Moreover, analysis of the remote sensing images indicated that the ancient landslide had been reactivated between 2005 and 2008. Detailed field displacement monitoring data showed that the whole slope was deforming significantly and continuously with the increase of the water level in the reservoir. The displacement rate had a positive correlation with the variation of the reservoir water level, increasing and decreasing as the the latter rose and fell, respectively. The vulnerable geological conditions, water infiltration, and the reservoir impoundment were the main factors causing the large deformation of the Guobu landslide. Water infiltration was the driving force resulting in the reactivation of the ancient landslide, and the reservoir impoundment accelerated the slope deformation. The mechanism of the large deformation of the rock slope was a combination of the upper pushing deformation induced by wedging and toppling, due to the ancient landslide reactivation, and the lower traction deformation due to the reservoir impoundment.
机译:一个不稳定的岩石斜坡,称为Gubu Landslide,在花岗岩中观察到最大累积位移45米,位于距离兰西瓦水电站,中国水电站大坝的上游,直接威胁大坝的安全性和生活在下游的人民的上游。调查了。进行了详细的现场调查,地质结构调查,遥感图像分析和GPS位移监测,探讨了储层蓄水后坡度的变形特性,历史变形,古代滑坡再激活,坡度大变形的影响因素,和机制。基于上述分析的结果,可以看出,研究区域的失效机制存在明显的地质结构依赖性,并且复杂的失效机制包括倒装,消除楔形失效,岩落和深度裂解坐岩石。此外,遥感图像的分析表明,古老的滑坡于2005年至2008年之间被重新激活。详细的现场位移监测数据显示,整个斜坡随着储层中的水位的增加而显着且连续地变形。排量率与水库水位的变化,随着后者的升降和下降,分别具有正相关性。脆弱的地质条件,水浸润和储层蓄水量是导致Gubbu滑坡大变形的主要因素。水渗透是古老滑坡导致重新激活的驱动力,水库蓄水量加速了坡度变形。由于古老的滑坡再激活,岩石斜坡的大变形机理是通过楔入和浇铸引起的上部推动变形的组合,由于古老的滑坡再激活,以及由于储存器蓄积而导致的牵引变形较低。

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  • 作者单位

    Chengdu Univ Technol State Key Lab Geohazard Prevent & Geoenvironm Pro Chengdu 610059 Sichuan Peoples R China|Laurentian Univ MIRARCO Sudbury ON P3E 2C6 Canada;

    Chengdu Univ Technol State Key Lab Geohazard Prevent & Geoenvironm Pro Chengdu 610059 Sichuan Peoples R China;

    Chengdu Univ Technol State Key Lab Geohazard Prevent & Geoenvironm Pro Chengdu 610059 Sichuan Peoples R China;

    Laurentian Univ MIRARCO Sudbury ON P3E 2C6 Canada|Laurentian Univ Bharti Sch Engn Sudbury ON P3E 2C6 Canada;

    Northwest Inst Survey & Design China Hydropower Consulting Grp Xian 710065 Shaanxi Peoples R China;

    Northwest Inst Survey & Design China Hydropower Consulting Grp Xian 710065 Shaanxi Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Landslide; Bank slope; Mechanism; Reservoir impoundment;

    机译:滑坡;银行坡;机制;水库蓄水;

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