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首页> 外文期刊>Journal of geotechnical and geoenvironmental engineering >Temperature-Dependent Model for Small-Strain Shear Modulus of Unsaturated Soils
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Temperature-Dependent Model for Small-Strain Shear Modulus of Unsaturated Soils

机译:不饱和土的小菌株剪切模量温度依赖性模型

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摘要

Near-surface soils in geotechnical and geoenvironmental applications are often unsaturated, and natural or imposed changes in temperature may lead to a softening effect at constant suction that causes a change in stiffness. To capture thermal effects on the stiffness of unsaturated soils, this paper presents an effective stress-based, temperature-dependent model for the small-strain shear modulus of unsaturated soils, with an emphasis on silts. The temperature dependency of the model was accounted for by employing temperature-dependent functions for matric suction and effective saturation characterized using the soil-water retention curve. To validate the proposed model, laboratory tests using a modified triaxial apparatus with bender elements were carried out on Bonny silt to measure the small-strain shear modulus at 23°C and 43°C for varying matric suctions of 0-110 kPa. The results from the proposed model were in a reasonable agreement with the experimentally measured values and demonstrate the importance of considering temperature effects on the shear modulus of unsaturated soils. The accuracy of the model was further validated by comparing the predicted values with laboratory test results on silts reported by two independent studies in the literature.
机译:岩土和地缘应用中的近表面土壤通常是不饱和的,并且温度的天然或施加变化可能导致恒定抽吸的软化效果导致刚度的变化。为了捕获对不饱和土的刚度的热效应,本文提出了一种有效的基于应力的温度依赖性模型,用于不饱和土的小菌株剪切模量,重点是淤泥。通过使用用于使用土壤 - 水保留曲线的温度依赖性功能和特征的有效饱和度来计算模型的温度依赖性。为了验证所提出的模型,在Bonny Silt上进行使用具有弯曲元件的改良三轴仪的实验室测试,以测量23℃和43℃的小菌剪模量,以进行0-110kPa的不同原子型。拟议模型的结果与实验测量值合理的协议,并证明了考虑温度效应对不饱和土壤剪切模量的重要性。通过将预测的值与在文献中的两个独立研究报告的淤泥上的实验室测试结果进行比较,进一步验证了模型的准确性。

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