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A discussion on the adjustment parameters of the Slope Mass Rating (SMR) system for rock slopes

机译:岩质边坡质量等级(SMR)系统调整参数的探讨

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摘要

Rock mass classification systems are common tools used in the design and construction of rock engineering. Numerous classification systems have been developed for rock slopes, of which the Slope Mass Rating (SMR) system is the most popular. Consequently, many rock slope classification systems have been derived from the SMR system. However, these systems are not good at determining the values of the two adjustment parameters F-1 and F-3, implying that the original SMR system may contain theory defects. In this paper, we propose some corrected methods for determining F-1 and F-3 and perform a series of analyses considering the three failure modes of rock slopes: plane, wedge, and toppling failures. The results of the discrepancy analysis from F-1 illustrate that, with respect to each of the aforementioned three failure modes the calculated original SMR index is larger than, or equal to, the real value, and the designed slope is possibly in danger. The results of the discrepancy caused by the F-3 illustrate that for each of the aforementioned three failure modes, the calculated original SMR index is smaller than, or equal to, the real value, and the designed slope might be conservative and not economical. (C) 2016 Elsevier B.V. All rights reserved.
机译:岩体分类系统是岩石工程设计和施工中常用的工具。已经开发了许多用于岩石斜坡的分类系统,其中斜坡质量等级(SMR)系统是最流行的。因此,已经从SMR系统获得了许多岩石坡度分类系统。但是,这些系统不能很好地确定两个调整参数F-1和F-3的值,这意味着原始SMR系统可能存在理论缺陷。在本文中,我们提出了一些确定F-1和F-3的校正方法,并考虑了岩石边坡的三种破坏模式:平面,楔形和倾覆破坏,进行了一系列分析。 F-1的差异分析结果表明,对于上述三种故障模式中的每一种,计算出的原始SMR指数均大于或等于实际值,并且设计斜率可能处于危险之中。由F-3引起的差异结果表明,对于上述三种故障模式中的每一种,计算出的原始SMR指数均小于或等于实际值,并且设计斜率可能是保守的且不经济。 (C)2016 Elsevier B.V.保留所有权利。

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