软弱夹层边坡抗滑稳定分析与抗滑桩桩位选择
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Anti-sliding stability analysis of weak interlayer slope and selection of anti-sliding pile position
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    摘要:

    结合某枢纽二线船闸深基坑边坡工程,建立概化模型,通过强度折减法分析软弱夹层边坡稳定性,并与规范比较得出边坡须进行加固处理。在对夹层边坡进行抗滑支护时,研究桩位对边坡稳定性的影响,并对不同桩位的抗滑桩内力分布规律进行分析。结果表明:抗滑桩从坡底沿着坡面向坡顶方向布置时,边坡安全系数呈现先增大后减小的变化规律,边坡塑性区塑性应变呈现先减小后增大的变化规律,抗滑桩剪力作用方向反转临界点和弯矩最大值均位于软弱夹层带附近;当抗滑桩位于边坡中部时,边坡安全系数最大,塑性区塑性应变最小,抗滑桩剪力与弯矩达到最大,抗滑效果最佳。

    Abstract:

    Combining with the deep foundation pit slope project of the second ship lock of a hub,we establish a generalized model,analyze the stability of the weak interlayer slope by the strength reduction method,and compare with the code to obtain that the slope should be reinforced. We study the influence of the pile position on the stability of the slope when carrying out anti-sliding support for the interlayer slope,and analyze the internal force distribution law of the anti-sliding pile under different pile positions. The results show that when the anti-sliding piles are arranged from the bottom of the slope along the slope face to the top of the slope,the safety factor of the slope first increases and then decreases,and the plastic strain of the plastic zone first decreases and then increases. The critical point of the direction of the anti-sliding pile’s shear force reversal and the maximum value of the bending moment were both located near the weak interlayer. When the anti-sliding pile is located in the middle of the slope,the slope safety factor is the maximum,the plastic zone is the smallest,the shear force and the bending moment of the anti-sliding pile are the largest,and the anti-sliding effect is the best.

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李华勇,王志鹏.软弱夹层边坡抗滑稳定分析与抗滑桩桩位选择[J].水运工程,2021(9):187-193.

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  • 在线发布日期: 2021-09-07
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