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Numerical Analysis of Stabilization of Slopes Overlying Bedrock Using Piles and Effect of Socketed Length of Pile on Stability

机译:使用桩桩覆盖基岩坡度稳定的数值分析及桩桩对稳定性的影响

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Piles are used widely for stabilization of landslides. To stabilize a slope settled on bedrock with piles the required factor of safety must be checked, and pile should be designed properly. Piles should be socketed into firm rock to prevent uprooting or overturning. In this research it is aimed to look into the socketed length of pile in bedrock. Therefore the parameters that affect the factor of safety of slope/pile system such as location, length, spacing and diameter of piles are analyzed. The effect of socketed length of pile in rock on pile behavior is investigated by plotting the shear force and bending moment diagrams along pile. The optimal pile position is found to be located slightly upper of the middle of the slope. The minimum socketed length after which the factor of safety will be remained constant is found to be 0.12L where L is pile length. FLAC3D computer code based on finite difference method is used to simulate the slope/pile system.
机译:桩广泛用于稳定山体滑坡。为了稳定在基岩上沉淀的斜坡,桩必须检查所需的安全系数,并应当正确设计桩。桩应侧插入牢固的岩石中以防止拔除或翻转。在这项研究中,它的目的是在基岩中调查桩的插座长度。因此,分析了影响坡/桩系统的安全系数的参数,例如位置,长度,间隔和桩的直径。通过绘制剪切力和桩沿桩绘制剪力力和弯矩图研究了岩石岩上岩石岩石岩的影响。发现最佳桩位置位于斜坡中间的略微上部。最小插槽长度之后,安全系数将保持恒定的常数是0.12L,其中L是桩长。基于有限差分方法的FLAC3D计算机代码用于模拟斜坡/桩系统。

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