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Comparison of slope stabilization methods by three-dimensional finite element analysis

机译:边坡稳定方法的三维有限元比较

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Man-made factors take an important place in the formation of landslides besides the natural events. Road constructions, establishing new residential areas and interfering natural drainage systems are some of the common reasons that cause landslides. A slope on an intercity road construction site in the western Black Sea region, Turkey, is selected for this study due to the presence of small-scale soil movements, rock falls, tension cracks and occurrence of landslides in the neighborhood. The study area is investigated at three different profiles based on the topography. Slope stability analyses are carried out on these profiles by three-dimensional finite element analyses. As the results of analysis critic levels of the factor of safety and the high soil movements are estimated for one of the profiles. There are a couple of methods developed to prevent potential landslides, ceasing soil movements and securing the construction zones. Stabilizing slopes with piles are widely being used to enhance slope stability of landslide-prone areas. In this study, the behavior of stabilizing piles with and without lateral support is investigated. The bending moments and shear forces of piles and the maximum soil displacements are estimated to evaluate the performance of pile-stabilized slopes. Slope angle reduction is being performed as a remediation option, and an optimal solution is proposed after comparing the result of the analyses.
机译:除自然事件外,人为因素在滑坡形成中也起着重要作用。道路建设,建立新的居民区和干扰自然排水系统是造成山体滑坡的常见原因。由于存在小范围的土壤运动,岩石崩塌,张裂和附近发生滑坡,因此本研究选择了土耳其黑海西部地区一个城市间道路施工现场的斜坡。根据地形,在三个不同的剖面上对研究区域进行了调查。通过三维有限元分析对这些剖面进行边坡稳定性分析。分析结果表明,对于其中一种剖面,评论家对安全系数和土壤高迁移率的水平进行了估算。已经开发出了两种方法来防止潜在的滑坡,停止土壤运动并保护建筑区域。带桩的稳定边坡被广泛用于增强滑坡易发地区的边坡稳定性。在这项研究中,研究了带有和不带有侧向支撑的稳定桩的行为。估计桩的弯矩和剪切力以及最大土壤位移,以评估桩稳定斜坡的性能。正在将坡度减小作为补救措施,并在比较分析结果后提出最佳解决方案。

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