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Visualization of rock mass classification systems

机译:岩体分类系统的可视化

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A rock mass classification system is intended to classify and characterize the rock masses, provide a basis for estimating deformation and strength properties, supply quantitative data for mine support estimation, and present a platform for communication between exploration, design and construction groups. In most widely used rock mass classification systems, such as RMR and Q systems, up to six parameters are employed to classify the rock mass. Visualization of rock mass classification systems in multi-dimensional spaces is explored to assist engineers in identifying major controlling parameters in these rock mass classification systems. Different visualization methods are used to visualize the most widely used rock mass classification systems. The study reveals that all major rock mass classification systems tackle essentially two dominant factors in their scheme, i.e., block size and joint surface condition. Other sub-parameters, such as joint set number, joint space, joint surface roughness, alteration, etc., control these two dominant factors. A series two-dimensional, three-dimensional, and multi-dimensional visualizations are created for RMR, Q, Rock Mass index RMi and Geological Strength Index (GSI) systems using different techniques. In this manner, valuable insight into these rock mass classification systems is gained.
机译:岩体分类系统旨在对岩体进行分类和表征,为估算变形和强度特性提供基础,为矿山支持估算提供定量数据,并为勘探,设计和施工小组之间的交流提供平台。在最广泛使用的岩体分类系统(例如RMR和Q系统)中,最多使用六个参数对岩体进行分类。探索了多维空间中岩体分类系统的可视化,以帮助工程师识别这些岩体分类系统中的主要控制参数。不同的可视化方法用于可视化使用最广泛的岩体分类系统。研究表明,所有主要的岩体分类系统在其方案中基本上解决了两个主要因素,即块体尺寸和节理面状况。其他子参数,例如关节组数,关节间距,关节表面粗糙度,变化等,控制着这两个主要因素。使用不同的技术为RMR,Q,岩体质量指数RMi和地质强度指数(GSI)系统创建了一系列的二维,三维和多维可视化。以这种方式,获得了对这些岩体分类系统的宝贵见解。

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