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A rational layout of double-row stabilizing piles for large-scale landslide control

机译:大型滑坡防治用双排稳定桩的合理布置

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Double rows of stabilizing piles can be applied to large-scale landslide control; however, the geometry of the layout can substantially affect the lateral bearing capacity of the structure. Based on slope slippage and deformation mechanisms, this paper proposes a specific pile layout configuration-an embedded rear-row pile (with the top of the pile embedded to a certain depth in the slope), and a full-length fore-row pile (with the top of the pile on the surface of the slope). This layout appears to be a rational arrangement for resisting a landslide with a polyline slip surface using double-row piles. As for landslides with a linear slip surface, a full-length pile layout of fore- and rear-row piles can be adopted. However, the area of sliding mass directly supported by the rear (upslope) and fore piles should be approximately equal (in plane) to ensure that the thrust force on the piles above the slip surface is close to the optimum condition. Based on a numerical simulation, this paper also discusses a method for determining a rational embedded depth for the top of the rear-row piles for landslides with polyline slip surfaces, as well as a more rational pile structural form in the case of relatively short distances between the two rows of piles. The results obtained in this paper provide theoretical support for a rational layout of double-row piles for large-scale landslide controls, and provide assistance for practical reinforced slope projects.
机译:双排稳定桩可应用于大规模滑坡治理;然而,布局的几何形状会实质上影响结构的侧向承载能力。基于边坡的滑移和变形机制,本文提出了一种特定的桩布局配置:埋入式后排桩(桩的顶部埋置在边坡中一定深度处)和全长前排桩(桩的顶部在斜坡的表面上)。这种布局似乎是使用双排桩抵抗带有折线滑动面的滑坡的合理安排。对于具有线性滑动面的滑坡,可以采用前桩和后桩的全长桩布置。但是,由后桩(上坡)和前桩直接支撑的滑动块的面积应大致相等(在平面上),以确保在滑移面上方的桩上的推力接近最佳状态。在数值模拟的基础上,本文还讨论了确定具有多义线滑移面的滑坡后排桩顶部合理埋入深度的方法,以及在距离相对较短的情况下确定较为合理的桩结构形式的方法。在两排桩之间。本文的研究结果为合理控制双排桩进行大规模滑坡治理提供了理论支持,并为实际的加固边坡工程提供了帮助。

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