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A model for predicting the modulus of elasticity of unsaturated soils using the soil-water characteristic curv

机译:利用土水特征曲线预测非饱和土弹性模量的模型

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摘要

A simple model was proposed by Oh et al. (2009) to predict the variation of modulus of elasticity with respect to matric suction for unsaturated coarse-grained soils (i.e., sandy soils with plasticity index, I_p = 0). This model requires the modulus of elasticity under saturated condition (E_(sat)) and the Soil-Water Characteristic Curve (SWCC) along with two fitting parameters (α and β). In the present study, this model has been extended and a general model has been proposed such that the modulus of elasticity can be estimated for all soils (i.e., both coarse- and fine-grained soils). The proposed model is developed using model footing and in-situ plate load test results of six different unsaturated soils. The study shows that there is a good comparison between the measured and the predicted modulus of elasticity with respect to matric suction for all the six soils whose plasticity index, I_p values are in the range of 0 to 16%.
机译:Oh等人提出了一个简单的模型。 (2009)预测了非饱和粗粒土(即具有可塑性指数I_p = 0的沙土)相对于基质吸力的弹性模量的变化。该模型需要饱和条件下的弹性模量(E_(sat))和​​土壤水特征曲线(SWCC)以及两个拟合参数(α和β)。在本研究中,已经扩展了该模型,并提出了一个通用模型,以便可以估算所有土壤(即粗粒和细粒土壤)的弹性模量。该模型是基于模型基础和六种不同非饱和土的原位板载荷试验结果而开发的。研究表明,对于六种可塑性指数I_p值都在0%至16%范围内的土壤而言,相对于基质吸力,测得的弹性模量与预测的弹性模量之间有很好的比较。

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