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首页> 外文期刊>Proceedings of the Institution of Civil Engineers. Geotechnical Engineering >An analytical method for a pile-stabilised slope considering soil anisotropy
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An analytical method for a pile-stabilised slope considering soil anisotropy

机译:考虑土壤各向异性桩稳定坡度的分析方法

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摘要

The use of stabilising piles is an effective method of reinforcing a slope against landslides. Soil arching between the piles promotes more load transfer into the piles, thus improving slope safety. However, few analytical solutions have been proposed for assessing the safety of an anisotropic slope with soil arching between stabilising piles, especially in most current design procedures. Based on BS 8006-1:2010, an analytical method was developed to evaluate the stability of a slope reinforced with stabilising piles, taking the anisotropy of soil strength and the horizontal soil-arching effect into account. A field case was used to assess the results of the proposed analytical method; differences of approximately 0.6-8.9% were found. To validate the proposed analytical method, a three-dimensional numerical simulation considering soil anisotropy was conducted; variation of the soil cohesion with depth and the direction of principal stress was introduced into the numerical analysis. The safety factors predicted by the numerical simulation agreed well with those derived by the proposed analytical method, with differences of 0.7-17%. The safety factor was found to decrease with increasing anisotropy coefficient and increase with higher effective cohesion and effective friction angle.
机译:使用稳定桩是一种加强坡度坡度的有效方法。桩之间的土壤拱形促进了桩中的更多载荷转移,从而提高了斜坡安全性。然而,已经提出了很少的分析解决方案,用于评估各向异性坡度与稳定桩之间的土壤拱形的安全性,特别是在大多数当前的设计程序中。基于BS 8006-1:2010,开发了一种分析方法,以评估坡度稳定桩增强的斜坡的稳定性,考虑了土壤强度的各向异性和水平土拱效应。使用现场案例来评估所提出的分析方法的结果;发现约0.6-8.9%的差异。为了验证所提出的分析方法,考虑了考虑土壤各向异性的三维数值模拟;在数值分析中引入了具有深度和主应力方向的土壤内聚力的变化。数值模拟预测的安全因素与所提出的分析方法源于衍生的那些,差异为0.7-17%。发现安全因子随着各向异性系数的增加而降低,并随着较高的有效内聚力和有效摩擦角而增加。

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