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Soil Arch Evolution Characteristics and Parametric Analysis of Slope Anchored Anti-slide Pile

机译:斜坡锚定抗滑桩土拱进化特征及参数分析

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摘要

The soil arching effect can significantly impact the bearing characteristics of the slope anchored anti-slide pile. Therefore, it is very important to investigate the internal force characteristics of the soil arch and the mechanism of pile-soil interaction. In this paper, the evolution mechanism and influencing parameters of the soil arching effect of anchored anti-slide pile are analyzed, from a qualitative and quantitative perspective through model tests and numerical simulation methods. Findings are summarized as follows: 1) the formation and evolution of the soil arches can be roughly divided into three stages: the initial stage, the development and formation of soil arches, and the failure and re-formation of soil arches. The stable arch feet are firstly formed, and a complete arch is generated. Then the landslide thrust is transmitted to form a stable anti-slide pile structure, so the anchored anti-slide pile can play a role in slope anti-slide. 2) During the formation and evolution of the soil arches, the soil particles between the piles transfer the landslide thrust to the anti-slide pile through the soil arches. 3) The bearing capacity of the soil arches decreases with the increase of the pile spacing. And the increase of the soil compaction can efficiently increase the bearing capacity of the soil arches and give full play to the role of slope anti-slide. 4) The growing of soil particle size, the enhancement of soil particle friction coefficient, and the decreasing of corresponding soil void ratio are all conducive to the formation of the soil arches. These can benefit the anti-sliding effect of the anchored anti-slide piles in engineering application.
机译:土壤拱形效果可以显着影响锚固抗滑桩的轴承特性。因此,研究土壤拱的内部力特征以及桩土相互作用的机理非常重要。本文通过模型试验和数值模拟方法,分析了分析了锚定抗滑桩土拱效应的进化机理及影响参数。调查结果如下:1)土壤拱门的形成和演变可以大致分为三个阶段:初始阶段,土拱的开发和形成,以及土拱的故障和重新形成。首先形成稳定的拱形脚,并产生完整的拱形。然后传输滑坡推力以形成稳定的抗滑动桩结构,因此锚固的抗滑动桩可以在斜坡抗幻灯片中发挥作用。 2)在土拱的形成和演变期间,桩之间的土壤颗粒通过土拱将滑坡转移到抗滑动桩。 3)土拱的承载力随着桩间距的增加而降低。土壤压实的增加可以有效地增加土拱的承载力,并充分发挥坡抗幻灯片的作用。 4)土壤粒度不断增长,土壤颗粒摩擦系数的增强,以及相应的土壤空隙率的降低都有助于形成土拱的形成。这些可以使锚定抗滑桩在工程应用中的防滑动效果受益。

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