黏土矿物对重质土体积变化特征的影响研究

M. Gomboš, I. Tall, B. Kandra, D. Pavelková
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引用次数: 0

摘要

粘土矿物可以吸收水分并将其融入其微观结构中。在这些过程中(吸水或失水),粘土颗粒的体积发生变化。土壤中粘土颗粒的高含量可以导致其体积变化,前提是同时存在水分变化。重质土在收缩和膨胀过程中发生的体积变化是重要的,因为它们伴随着土壤表面收缩和裂缝的形成。裂缝的形成和动力学对重质土壤的运移过程产生重要影响,从而影响其水分状况。本章描述了粘土含量对土壤线性扩展系数(COLE)、线性扩展势(PLE)和几何因子影响的分析结果。验证了纹理对体积变化势值和几何因子的影响,进而对体积变化在垂直和水平分量上的分布程度的影响。该假设假定粘土组分对体积变化势和几何因子值的影响最大。新的信息是在实地和实验室测量的基础上获得的。研究结果将用作重质土壤水分状况数值模拟的输入。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study on Impact of Clay Minerals on the Characteristics of Volume Changes of Heavy Soils
Clay minerals can absorb water and incorporate it into its microstructure. During these processes (water absorption or loss), volume changes occur in clay particles. High content of clay particles in soils can lead to their volume changes, provided there are simultaneous changes in moisture. Volume changes of heavy soils occuring during shrinking and swelling processes are important because they are accompanied with soil surface shrinkage and cracks formation. Formation and dynamics of cracks have an important impact on transport processes in heavy soils and consequently on their water regime. The presented chapter describes the results of the analysis of the influence of clay content on the coefficient of linear extensibility (COLE), potential of linear extensibility (PLE) and geometric factor of soils. The hypothesis about the influence of texture on the value of the volume change potential and the geometric factor, and thus on the degree of distribution of volume changes on the vertical and horizontal components, was verified. The hypothesis assumes that the clay soil component has the greatest influence on the potential of volume changes and on the geometric factor value. New information is obtained on the basis of field and laboratory measurements. Results will be used as inputs for numerical simulation of water regimes of heavy soils.
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