Cambio en las propiedades geotécnicas de un suelo sometido a ignición en laboratorio

Y. González, J. Restrepo, María Camila Guerra, D. Ramírez, O. Ramírez
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引用次数: 1

Abstract

Tropical areas are regions subject to warm environments and their soils, especially in areas covered with vegetation, may be exposed to events such as fires. The high temperatures that can be reached in these events cause variations in some of the geotechnical properties of soils, influencing the behavior of the material, and can give rise to erosive processes, which in many cases precede mass movements. The following article describes what happens in a soil that has undergone an ignition process in the laboratory, analyzing the variations in some physical (moisture content, Atterberg limits, specific gravity and granulometry), chemical (pH and cation exchange capacity), mineralogical, structural and mechanical (suction, disintegration and pinhole test) properties; clearly showing that the material becomes more acidic with a higher void ratio, less cation exchange capacity, less kaolinite, plasticity and suction, and variation in texture, with a consequent increase in erodibility.
实验室点火土壤岩土特性的变化
热带地区是指环境温暖的地区,其土壤,尤其是植被覆盖的地区,可能面临火灾等事件。在这些事件中可能达到的高温会导致土壤的一些岩土性质发生变化,影响材料的行为,并可能引发侵蚀过程,在许多情况下,侵蚀过程先于物质运动。以下文章描述了在实验室中经过点火过程的土壤中发生的情况,分析了一些物理(含水量、阿太堡极限、比重和粒度)、化学(pH和阳离子交换能力)、矿物学、结构和机械(吸力、崩解和针孔测试)特性的变化;清楚地表明,随着孔隙比的增加、阳离子交换能力的降低、高岭石的减少、塑性和吸力的增加以及质地的变化,材料变得更酸性,从而增加了可蚀性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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