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Behavior of diatomaceous soil in lacustrine deposits of Bogota, Colombia 被引量:6
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作者 Bernardo Caicedo Cristhian Mendoza +1 位作者 Fernando López Arcesio Lizcano 《Journal of Rock Mechanics and Geotechnical Engineering》 CSCD 2018年第2期367-379,共13页
This work presents a study on the behaviors of diatomaceous soils. Although studies are rarely reported on these soils, they have been identified in Mexico City, the Sea of Japan, the northeast coast of Australia,the ... This work presents a study on the behaviors of diatomaceous soils. Although studies are rarely reported on these soils, they have been identified in Mexico City, the Sea of Japan, the northeast coast of Australia,the equatorial Pacific, and the lacustrine deposit of Bogota(Colombia), among other locations. Features of this kind of soil include high friction angle, high initial void ratio, high compressibility index, high liquid limit, and low density. Some of these features are counterintuitive from a classical soil mechanics viewpoint. To understand the geotechnical properties of the diatomaceous soil, a comprehensive experimental plan consisting of more than 2400 tests was performed, including physical tests such as grain size distribution, Atterberg limits, density of solid particles, and organic matter content; and mechanical tests such as oedometric compression tests, unconfined compression tests, and triaxial tests.Laboratory tests were complemented with scanning electron microscope(SEM) observations to evaluate the microstructure of the soil. The test results show that there is an increase in liquid limit with increasing diatomaceous content, and the friction angle also increases with increasing diatomaceous content. In addition, several practical correlations were proposed for this soil type for shear strength mobilization and intrinsic compression line. Finally, useful correlations were presented, such as the relationship between the state consistency and the undrained shear strength, the friction angle and the liquid limit, the void ratio at 100 kPa and the liquid limit, the plasticity index and the diatomaceous content, among others. 展开更多
关键词 diatomaceous soil Soft soils COMPRESSIBILITY Friction angle Natural soil
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硅藻土的微观结构特征及其对物理性质的影响 被引量:1
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作者 徐倚晴 张先伟 +2 位作者 王港 刘新宇 高浩东 《岩土力学》 EI CAS CSCD 北大核心 2023年第12期3501-3511,共11页
硅藻土通常形成于湖泊或海洋环境,是一种由黏土矿物和硅藻残骸组成的天然沉积土。硅藻的轻质与多孔性质使硅藻土的物理特性与不含硅藻的细粒土有较大差异,如低密度、大孔隙比、高含水率的特点,其性质指标不能用常规土力学经验公式确定,... 硅藻土通常形成于湖泊或海洋环境,是一种由黏土矿物和硅藻残骸组成的天然沉积土。硅藻的轻质与多孔性质使硅藻土的物理特性与不含硅藻的细粒土有较大差异,如低密度、大孔隙比、高含水率的特点,其性质指标不能用常规土力学经验公式确定,当前对这类特殊土的研究尚属探索阶段。为了系统认识硅藻土的物理性质,配置不同硅藻含量的混合土,测试粒径组成、相对密度、比表面积、液塑限等指标,调查了硅藻对物理性质的影响,通过扫描电镜试验解析了微观机制。结果表明:土中的硅藻含量增加会引起粉粒成分增加、相对密度降低、同时比表面积与阳离子交换量也会提高;无论孔隙流体含盐量高低,硅藻土的液塑限均随着硅藻含量的增加而增加,并且塑性指数保持几乎不变。微观结构调查发现硅藻土的特殊物理性质主要受控于硅藻的大体积的中空内腔以及较强的储水能力。试验过程中还发现,尽管硅藻土的液塑限值很高,硅藻含量80%及以上的硅藻土却表现为塑性较弱或几乎没有塑性的粉土,说明液塑限值并不能很好地反映硅藻土的塑性性质,目前通用的细粒土分类标准对硅藻土分类是不合理的。该研究可以为硅藻土的岩土工程性质研究提供数据参考和理论支撑。 展开更多
关键词 硅藻 硅藻土 物理特性 微观结构 液塑限 塑性
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