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首页> 外文期刊>International Journal of Rock Mechanics and Mining Sciences >Deep weathering of a group of thick argillaceous limestone rocks near Three Gorges Reservoir, Central China
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Deep weathering of a group of thick argillaceous limestone rocks near Three Gorges Reservoir, Central China

机译:中国中部三峡水库附近一群厚质泥质灰岩岩石的深层风化

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摘要

Rock mass characterization is one of the most basic and important tasks in rock mechanics and engineering. Literature review indicates that although there are many publications available on weathered rocks, there are few reports in English on weathered argillaceous limestone rocks and their chemical and mechanical properties. This paper presents a case study of characterizing a group of highly weathered thick argillaceous limestone rocks. Most importantly, they can be easily and quickly decomposed into soils after they are exposed due to excavation. Consequently, they would substantially lose their mechanical strengths. Geohazards such as landslides and sinkholes could occur in uncovered highly weathered argillaceous limestone rocks. The problematic weathered rocks were found during the development of a new town in upper mountains above the Three Gorges Reservoir on Yangtze River in Central China in the past 20 years. The factual data are presented on the changes of chemical compositions and mechanical properties of the weathered argillaceous limestone rocks due to chemical weathering. Some empirical correlations are given to quantify the changes in their uniaxial compressive strength and deformation moduli in terms of their contents of calcium carbonate. The data and findings presented in the paper can be useful to future urban development in geologically poor mountainous environments occupied by highly weathered argillaceous limestone rocks in the world.
机译:岩体表征是岩石力学和工程学中最基本,最重要的任务之一。文献综述表明,尽管有很多关于风化岩石的出版物,但英文的风化泥质石灰石岩石及其化学和机械性能的报道很少。本文提出了对一组高度风化的厚质泥质灰岩岩石进行表征的案例研究。最重要的是,由于挖掘而暴露出来后,它们可以轻松,快速地分解成土壤。因此,它们将实质上失去其机械强度。未发现的高度风化的泥质石灰岩可能会发生滑坡和塌陷等地质灾害。在过去的20年中,在中国中部长江三峡水库上方的高山山区开发新城镇时发现了有问题的风化岩石。提供了有关化学风化引起的风化泥质石灰岩岩石化学成分和力学性能变化的事实数据。给出了一些经验相关性,以量化它们在碳酸钙含量方面的单轴抗压强度和变形模量的变化。本文中提供的数据和发现对于世界上高度风化的泥质灰岩岩石所占据的地质条件恶劣的山区环境中的未来城市发展很有用。

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