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Correlation of the Rock Mass Rating (RMR) System with the Unified Soil Classification System (USCS): Introduction of the Weak Rock Mass Rating System (W-RMR)

机译:岩土额定值(RMR)系统与统一土壤分类系统的相关性(USCS):弱岩质量额定系统引入(W-RMR)

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Underground gold mines in Nevada are exploiting increasingly deeper ore bodies comprised of weak to very weak rock masses. The Rock Mass Rating (RMR) classification system is widely used at underground gold mines in Nevada and is applicable in fair to good-quality rock masses, but is difficult to apply and loses reliability in very weak rock mass to soil-like material. Because very weak rock masses are transition materials that border engineering rock mass and soil classification systems, soil classification may sometimes be easier and more appropriate to provide insight into material behavior and properties. The Unified Soil Classification System (USCS) is the most likely choice for the classification of very weak rock mass to soil-like material because of its accepted use in tunnel engineering projects and its ability to predict soil-like material behavior underground. A correlation between the RMR and USCS systems was developed by comparing underground geotechnical RMR mapping to laboratory testing of bulk samples from the same locations, thereby assigning a numeric RMR value to the USCS classification that can be used in spreadsheet calculations and geostatistical analyses. The geotechnical classification system presented in this paper including a USCS-RMR correlation, RMR rating equations, and the Geo-Pick Strike Index is collectively introduced as the Weak Rock Mass Rating System (W-RMR). It is the authors' hope that this system will aid in the classification of weak rock masses and more usable design tools based on the RMR system. More broadly, the RMR-USCS correlation and the W-RMR system help define the transition between engineering soil and rock mass classification systems and may provide insight for geotechnical design in very weak rock masses.
机译:内华达州的地下金矿正在利用越来越深的矿石,由弱势岩体组成。岩石质量额定值(RMR)分类系统广泛应用于内华达州的地下金矿,适用于优质的岩石群众,但难以施加和失去岩石质量较弱的岩石质量的可靠性。由于非常弱的岩石群体是边界工程岩体和土壤分类系统的过渡材料,因此土壤分类有时可能更容易,更适合提供洞察材料行为和性质。统一的土壤分类系统(USCS)是对土壤状物料的非常弱岩体分类的最有可能选择,因为它在隧道工程项目中使用的使用以及预测地下土壤的材料行为的能力。通过将地下地理性RMR映射与来自同一位置的批量样本的实验室测试进行比较来开发RMR和USCS系统的相关性,从而将数字RMR值分配给USCS分类,该分类可以用于电子表格计算和地质统计分析。本文介绍的岩土分类系统包括USCS-RMR相关,RMR评级方程和地球拾取指数,作为弱岩质量额定系统(W-RMR)。作者希望这一系统能够帮助基于RMR系统进行弱岩体和更具可用设计工具的分类。更广泛地,RMR-USCS相关性和W-RMR系统有助于定义工程土壤和岩石质量分类系统之间的过渡,并可在非常弱的岩体中提供对岩土设计的洞察力。

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