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Temporary stability of steep, noncemented and lightly cemented soil slopes

机译:陡峭,非胶结和轻度胶结土质边坡的临时稳定性

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Many steep soil slopes are apparently stable beyond what is indicated by slope stability analysis. The mechanism of slope stability in dilating soils is explained in detail, and the development of shear strength in such soils is demonstrated by drained and undrained tests on dense sand. It is argued that appropriate shear strength parameters for analysis of slope stability in dilating materials describe the residual strength. It is explained how reliance on peak shear strength parameters is unsafe, because the component of shear strength created by the additional effective confining pressure caused by development of suction due to inhibited dilation can be exhausted by either access to water or by drying the soil. The fleeting phenomenon of apparent additional shear strength causes super-stability of the slope. Exhaustion of the soil's capacity to dilate results in reduction of shear strength and instability of the steep slope. It is difficult to predict the time when the soil's capacity to dilate is exhausted and when the consequent decline in shear strength occurs. This is because this decline occurs with access to water. This is demonstrated by triaxial compression tests on saturated and partly saturated, dilating specimens.
机译:许多陡峭的土壤斜坡显然超出斜坡稳定性分析所表明的范围。详细解释了膨胀土中边坡稳定性的机理,并通过在稠密砂土上进行的排水和不排水试验证明了这种土壤的抗剪强度的发展。有人认为,用于分析膨胀材料中边坡稳定性的合适的抗剪强度参数描述了残余强度。解释了如何依靠峰值剪切强度参数是不安全的,因为通过接触水或干燥土壤可以耗尽由于因抑制膨胀而产生的吸力而产生的额外有效围压所产生的剪切强度分量。明显的附加抗剪强度的转瞬即逝现象引起了斜坡的超稳定性。耗尽土壤的膨胀能力会导致抗剪强度的降低和陡坡的不稳定性。很难预测土壤膨胀能力用尽的时间以及随之而来的剪切强度下降的时间。这是因为这种下降发生在获得水的情况下。通过对饱和和部分饱和的膨胀试样进行三轴压缩测试可以证明这一点。

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