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3D key-group method for slope stability analysis

โœ Scribed by M. Noroozi; S. E. Jalali; A. R. Yarahmadi-Bafghi


Publisher
John Wiley and Sons
Year
2011
Tongue
English
Weight
985 KB
Volume
36
Category
Article
ISSN
0363-9061

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โœฆ Synopsis


SUMMARY

Because of the simplicity and the speed of execution, methods used in static stability analyses have yet remained relevant. The keyโ€block method, which is the most famous of them, is used for the stability analysis of fractured rock masses. The KBM method is just based on finding key blocks, and if no such blocks are found to be unstable, it is concluded that the whole of the rock mass is stable. Literally, though groups of โ€˜stableโ€™ blocks are taken together into account, in some cases, it may prove to be unstable. An iterative and progressive stability analysis of the discontinuous rock slopes can be performed using the keyโ€group method, in which groups of collapsible blocks are combined. This method is literally a twoโ€dimensional (2D) limit equilibrium approach. Because of the normally conservational results of 2D analysis, a threeโ€dimensional (3D) analysis seems to be necessary.

In this paper, the 2D keyโ€group method is developed into three dimensions so that a more literal analysis of a fractured rock mass can be performed. Using Mathematica software, a computer program was prepared to implement the proposed methodology on a real case. Then, in order to assess the proposed 3D procedure, its implementation results are compared with the outcomes of the 2D keyโ€group method. Finally, tectonic block No.2 of Choghart open pit mine was investigated as a case study using the proposed 3D methodology. Results of the comparison revealed that the outcomes of the 3D analysis of this block conform to the reality and the results of 2D analysis. Copyright ยฉ 2011 John Wiley & Sons, Ltd.


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