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首页> 外文期刊>Acta Geotechnica Slovenica >S_BRICK: A CONSTITUTIVE MODEL FOR SOILS AND SOFT ROCKS
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S_BRICK: A CONSTITUTIVE MODEL FOR SOILS AND SOFT ROCKS

机译:S_BRICK:土壤和柔软岩石的构成模型

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Materials known in the literature as hard soils and soft rocks are widely spread, natural materials that are commonly encountered in engineering practise. It was demonstrated that some of these materials can be described through the general theoretical framework for structured soils set by Cotecchia and Chandler [14], which takes into account the structure as an intrinsic property present in all natural geological materials. Based on laboratory results and existing theoretical frameworks, the development of a constitutive model for structured materials was carried out. The model formulated in strain space named BRICK [27, 29] was chosen as the base model and was further developed by adding features to model both the structure and the processes of destructuring. The new model was named S_BRICK and was first presented on a conceptual level, in which the typical results of modelling structured and structureless (reconstituted) materials on different stress paths were compared within the solutions of the Cotecchia and Chandler [14] theoretical framework. The S_BRICK model was validated on three materials, i.e., Pappadai clay, North-Sea clay and Corinth marl, thus covering a wide range of natural, structured materials. The results showed that S_BRICK was able to successfully model the stress-strain behaviour typical for hard-soil and soft-rock materials, in general.
机译:作为硬质土壤和软岩中的文献中已知的材料广泛传播,在工程实践中通常遇到的天然材料。有人证明,这些材料中的一些可以通过Cotecchia和Chandler [14]的结构化土壤的一般理论框架描述,这考虑了作为所有天然地质材料存在的内在性质的结构。基于实验室结果和现有的理论框架,进行了结构化材料本构模型的开发。选择在应变空间中的模型作为基础模型选择,并进一步通过添加特征来建模结构和破坏性过程。新型号被命名为S_BRICK,首先在概念层面上呈现,其中在Cotecchia和Chandler [14]理论框架的溶液中,比较了在不同应力路径上进行了建模结构和结构(重构)材料的典型结果。 S_BRICK模型在三种材料上验证,即PAPPADAI粘土,北海粘土和科林斯马尔,因此涵盖了各种天然结构化材料。结果表明,S_BRICK能够成功模拟典型的硬质土和软岩材料的应力 - 应变行为。

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