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Coupled Thermohydromechanical Double-Structure Model for Expansive Soils

机译:膨胀土的耦合热水机械双结构模型

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In this paper, development of a thermohydromechanical model for expansive soils including double structure is described. The model is based on the previously developed double-structure hypoplastic model, in which hydromechanical coupling is considered at each of the two structural levels. The model also includes separate effective stress definitions and water retention curves for the two levels of structure, and they are linked through the double-structure coupling function. In the proposed model, thermal effects are considered on the mechanical behavior of both the macrostructure and the microstructure. This is combined with a temperature-dependent water retention curve for the macrostructure and an enhanced double-structure coupling law. Good predictions of the model are demonstrated by comparing the simulations with experimental data on MX80 bentonite taken from the literature. (C) 2017 American Society of Civil Engineers.
机译:在本文中,描述了包括双结构的膨胀土的热透中力学模型的发展。 该模型基于先前显影的双结构假置模型,其中在两个结构级别中的每一个中考虑流体机械耦合。 该模型还包括两个结构的单独的有效应力定义和水保持曲线,它们通过双结构耦合功能连接。 在所提出的模型中,考虑了宏观结构和微结构的机械行为的热效应。 这与用于宏观结构的温度依赖性水保持曲线和增强的双结构耦合法相结合。 通过将模拟与来自文献中的MX80膨润土的实验数据进行比较来证明对模型的良好预测。 (c)2017美国土木工程师协会。

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