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Limit Equilibrium Analyses for Internal Design of Geosynthetic Reinforced Slopes: Influence of Potential Failure Surface and Strength Distribution

机译:土工合成材料加筋边坡内部设计的极限平衡分析:潜在破坏面和强度分布的影响

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The paper presents results from a computer code, based on limit equilibrium analyses, able to quantify earth pressure coefficients for the internal design of geosynthetic reinforced soil structures and identify the potential failure surfaces. Failure mechanisms assuming bilinear or logarithmic spiral failure surfaces are considered. The influence of the potential failure surface and geosynthetic strength distribution on the earth pressure coefficient is analysed. Required reinforcement tensile strengths calculated by the developed program are compared with values published in the literature. To further evaluate the capabilities of limit equilibrium analyses, the numerical modelling of a geosynthetic reinforced steep slope, designed at ultimate limit state conditions (FS = 1), is also presented. Good agreement was achieved between the potential failure surfaces predicted by limit equilibrium analyses and those obtained with numerical modelling.
机译:本文介绍了基于极限平衡分析的计算机代码的结果,该代码能够量化土工合成材料加筋土结构内部设计的土压力系数,并确定潜在的破坏面。考虑假定双线性或对数螺旋形破坏面的破坏机制。分析了潜在破坏面和土工合成材料强度分布对土压力系数的影响。将通过开发的程序计算出的所需钢筋拉伸强度与文献中公布的值进行比较。为了进一步评估极限平衡分析的能力,还介绍了在极限极限状态条件下(FS = 1)设计的土工合成加筋陡坡的数值模型。通过极限平衡分析预测的潜在破坏面与通过数值建模获得的潜在破坏面之间达成了良好的一致性。

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