Geotechnical design and uncertainty in residual soil slopes

K. Mandisodza, M. Dunn
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引用次数: 1

Abstract

Mining in residual soils is a characteristic of some open pit mines, particularly those mines in the tropical and sub-tropical regions. With residual soils’ prevalence on the earth’s surface almost as common as that of sedimentary rocks (Wesley 2013), mining in such soils requires special understanding of the behaviour and characteristics of the residual soil to determine slope designs that are both safe and economic. Due to the presence of relict structures, and the relatively low strength of the residual soils and weathered rock, design slope angles in these materials should be developed by blending the results of the kinematic assessments of geologic structures with rock mass stability analyses and traditional soil mechanics (Newcomen & Burton 2000). It is thus imperative that geotechnical designs should be site/location-specific and based on soil’s field performance, back-analyses and risk zoning. Understanding the variability of these materials is important for developing robust designs. This paper outlines the different aspects that are to be considered when conducting slope designs in residual soils, and in particular, saprolites, and summarises shear strength data from various mine sites that highlights the uncertainty associated with these parameters.
土工设计与残积土边坡的不确定性
剩余土开采是一些露天矿山的特点,特别是热带和亚热带地区的露天矿山。由于地球表面的残余土壤几乎与沉积岩一样普遍(Wesley 2013),在这种土壤中采矿需要对残余土壤的行为和特征有特殊的了解,以确定既安全又经济的边坡设计。由于残余结构的存在,以及残余土壤和风化岩石的强度相对较低,这些材料中的设计边坡角应该通过将地质结构的运动学评估结果与岩体稳定性分析和传统土壤力学相结合来开发(纽科门和伯顿2000)。因此,岩土工程设计必须是特定地点/地点的,并以土壤的现场性能、反向分析和风险分区为基础。了解这些材料的可变性对于开发稳健的设计非常重要。本文概述了在残积土,特别是腐殖岩中进行边坡设计时需要考虑的不同方面,并总结了来自不同矿区的抗剪强度数据,这些数据突出了与这些参数相关的不确定性。
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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