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Modelling stress-strain and volume change behaviour of unsaturated soils using an evolutionary based data mining technique, an incremental approach

机译:使用基于进化的数据挖掘技术(一种增量方法)对非饱和土壤的应力-应变和体积变化行为进行建模

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摘要

Modelling of unsaturated soils has been the subject of many research works in the past few decades. A number of constitutive models have been developed to describe the complex behaviour of unsaturated soils. However, many have proven to be unable to predict all aspects of the behaviour of unsaturated soils in a unified manner. In this paper an alternative new approach is presented, based on the Evolutionary Polynomial Regression (EPR) technique. EPR is a data mining technique that generates a transparent and structured representation of the behaviour of a system directly from input test data. The capabilities of the proposed EPR-based framework in modelling of behaviour of unsaturated soils are illustrated using results from a comprehensive set of triaxial tests on samples of compacted unsaturated soils from literature. The main parameters used for modelling of the behaviour of unsaturated soils during shearing are initial water content, initial dry density, mean net stress, axial strain, suction, volumetric strain, and deviator stress. The model developed is used to predict different aspects of the behaviour of unsaturated soils for conditions not used in the model building process. The results show that the proposed approach provides a useful framework for modelling of unsaturated soils. The merits and advantages of the proposed approach are highlighted.
机译:在过去的几十年中,非饱和土壤的建模一直是许多研究工作的主题。已经开发出许多本构模型来描述非饱和土壤的复杂行为。但是,许多人已被证明无法以统一的方式预测非饱和土壤的各个方面。本文提出了一种基于进化多项式回归(EPR)技术的替代新方法。 EPR是一种数据挖掘技术,可直接从输入测试数据中生成系统行为的透明且结构化的表示形式。使用从文献中对压实的不饱和土壤样品进行的全面三轴测试集的结果,可以说明所提出的基于EPR的框架在不饱和土壤行为建模中的功能。用于模拟非饱和土在剪切过程中的行为的主要参数是初始含水量,初始干密度,平均净应力,轴向应变,吸力,体积应变和偏应力。开发的模型用于预测在模型构建过程中未使用的条件下非饱和土行为的不同方面。结果表明,该方法为非饱和土的建模提供了有用的框架。突出了所提出的方法的优点和优点。

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