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Deformation Control Method of the Antislide Pile under Trapezoidal Load in the Zhangjiawan Landslide

机译:张家湾滑坡下梯形荷载下防粘土桩的变形控制方法

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摘要

Antislide piles are set in the Zhangjiawan landslide area, where the general features of the bedrock below the slip surface include upper weak and lower hard strata. Based on a site investigation, the horizontal displacement of the antislide pile head is 14.8?cm, which is not conducive to the stability of the landslide. In the study, a displacement calculation method for the pile under trapezoidal load is proposed for a colluvial landslide controlling. Furthermore, factors affecting the deformation and internal forces of the pile were also studied. The results indicated that (1) when the embedded length of an antislide pile increases, the horizontal displacement on the pile and maximum absolute shear force decrease, while the bending moment of the pile exhibits opposite trends; (2) the relationship between maximum shear force and maximum bending moment is linear with increasing driving force of landslide; and (3) increase in the ratio of the driving force between the pile head and slip surface (q0/q1) steadily increases the horizontal displacement of the pile. The relationship between the distribution of the driving force (q0/q1) and the reasonable embedded length of a pile is a quadratic function, which can be used to determine the reasonable embedded length of a pile under the action of rectangular or triangular loads. It is very useful to use the above method to guide the design of antislide piles in similar areas.
机译:防粘土桩在张家湾滑坡区设定,下滑表面下方的基岩的一般特征包括上部弱和低硬度。基于现场调查,防粘土头的水平位移是14.8Ωcm,这不利于滑坡的稳定性。在该研究中,提出了一种梯形载荷下桩的位移计算方法,用于梯形滑坡控制。此外,还研究了影响桩变形和内部力的因素。结果表明(1)当嵌入式的防粘土桩的增加时,桩上的水平位移和最大绝对剪切力减小,而桩的弯曲力矩呈现相反的趋势; (2)最大剪切力与最大弯曲力矩之间的关系是随着滑坡驱动力的增加; (3)桩头和滑动表面(Q0 / Q1)之间的驱动力的比率增加(Q0 / Q1)稳定地增加了桩的水平位移。驱动力的分布(Q0 / Q1)和合理的嵌入长度之间的关系是二次功能,可用于根据矩形或三角形负载的作用确定桩的合理嵌入的长度。使用上述方法来指导类似领域的防粘土桩的设计是非常有用的。

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