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The correlation between RMR and Q systems in parts of Iran

机译:伊朗部分地区的RMR和Q系统之间的相关性

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摘要

One of the approaches for characterising rock masses with discontinuities due to the presence of engineered designs is to use rock mass classification. Thus far, many classification systems, including RMR, Q, and GS1, have been proposed in the literature. Their parameters are based on site investigations, such as surface/subsurface fracture studies and well coring, as well as laboratory experiments. When sufficient information is not available, the utilisation of several rock mass classification systems is useful to compile a more complete understanding of the composition and characteristics of a rock mass. Thus, many correlations have been drawn to relate different systems, especially between RMR and Q systems. In this study, the best correlation coefficient between RMR and Q systems was determined with the aim of suggesting a new potential correlation for various geotechnical activities in parts of Iran. To accomplish this aim, rock mass parameters for the RMR and Q systems were assessed by considering their values separately for more than 800 stations at 14 different sites and applying statistical procedures to the data. Finally, a new correlation was determined.
机译:由于工程设计的存在,表征具有不连续性的岩体的方法之一是使用岩体分类。迄今为止,文献中已经提出了许多分类系统,包括RMR,Q和GS1。它们的参数基于现场调查,例如表面/地下裂缝研究和钻井取芯,以及实验室实验。如果没有足够的信息,则可以利用几个岩体分类系统来更完整地理解岩体的组成和特征。因此,已经绘制出许多相关性以关联不同的系统,尤其是在RMR和Q系统之间。在这项研究中,确定了RMR和Q系统之间的最佳相关系数,旨在为伊朗部分地区的各种岩土活动提出新的潜在相关性。为了实现这一目标,对RMR和Q系统的岩体参数进行了评估,方法是分别考虑14个不同站点的800多个站点的值,并对数据应用统计程序。最后,确定了新的相关性。

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