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Fully Softened Shear Strength for Soil Slope Stability Analyses

机译:充分软化的抗剪强度,用于土质边坡稳定性分析

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The fully softened shear strengths of soils, mudstones, and shales of different plasticities and gradations were measured at low (10 and 25 kPa), intermediate (50 and 100 kPa), and high (200, 300, and 400 kPa) effective normal stresses. A torsional ring shear apparatus was used for the strength measurement. The effects of the change in nonlinearity of the fully softened shear strength envelope over the utilized normal stress ranges on slope stability analyses were investigated. An empirical correlation was developed to predict the fully softened shear strength as a function of plasticity index and a wide range of effective normal stresses. The correlation is presented as a revised version of those previously developed for a limited number of normal stresses that do not cover the range mobilized in the vast majority of reported long-term first-time landslides. A numerical expression was also introduced to allow for direct incorporation of the fully softened shear strength correlation in slope stability software. Comparisons with measured fully softened shear strength data available in the literature are given to verify the reliability of the presented correlation and numerical expression for use in slope stability analyses.
机译:在低(10和25 kPa),中(50和100 kPa)和高(200、300和400 kPa)有效法向应力下测量了不同塑性和等级的土壤,泥岩和页岩的完全软化的剪切强度。使用扭转环剪切仪进行强度测量。研究了充分软化的抗剪强度包络线在所利用的法向应力范围内的非线性变化对边坡稳定性分析的影响。建立了经验相关性,以预测完全软化的剪切强度与可塑性指数和各种有效法向应力的关系。相关性是以前为有限数量的正应力而开发的那些的修订版本,这些正应力并未涵盖绝大多数已报道的长期首次滑坡所动员的范围。还引入了数值表达式,以允许将完全软化的剪切强度相关性直接合并到边坡稳定性软件中。给出了与文献中所测得的完全软化的剪切强度数据的比较结果,以验证所提出的相关性和数值表达式在边坡稳定性分析中的可靠性。

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