Investigation on strength and stability of jointed rock mass using three-dimensional numerical manifold method
This paper proposes a numerical model for jointed rock masses within the 3-D numerical manifold method (NMM) framework equipped with a customized contact algorithm. The strength of rock sample containing a few sets of discontinuities is first investigated. The results of models with simple geometrie...
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sg-ntu-dr.10356-1023832020-03-07T11:43:48Z Investigation on strength and stability of jointed rock mass using three-dimensional numerical manifold method He, L. Zhao, X. B. Zhao, Z. Y. An, Xinmei School of Civil and Environmental Engineering DRNTU::Engineering::Civil engineering DRNTU::Engineering::Environmental engineering This paper proposes a numerical model for jointed rock masses within the 3-D numerical manifold method (NMM) framework equipped with a customized contact algorithm. The strength of rock sample containing a few sets of discontinuities is first investigated. The results of models with simple geometries are compared with the available analytical solutions to verify the developed computer code, whereas models with complex geometries are simulated to better understand the fundamental behavior and failure mechanism of jointed rock mass. Furthermore, the stability of jointed rock mass in an underground excavation is studied, where rock failure process is determined by the 3-D NMM simulation. The simulation results provide valuable guidance on excavation process design and stabilization design in rock engineering practice. 2013-10-24T08:03:23Z 2019-12-06T20:54:09Z 2013-10-24T08:03:23Z 2019-12-06T20:54:09Z 2012 2012 Journal Article He, L., An, X. M., Zhao, X. B., & Zhao, Z. Y. (2012). Investigation on strength and stability of jointed rock mass using three-dimensional numerical manifold method. International journal for numerical and analytical methods in geomechanics, 37(14), 2348-2366. 0363-9061 https://hdl.handle.net/10356/102383 http://hdl.handle.net/10220/16818 10.1002/nag.2147 en International journal for numerical and analytical methods in geomechanics |
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DRNTU::Engineering::Civil engineering DRNTU::Engineering::Environmental engineering He, L. Zhao, X. B. Zhao, Z. Y. An, Xinmei Investigation on strength and stability of jointed rock mass using three-dimensional numerical manifold method |
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This paper proposes a numerical model for jointed rock masses within the 3-D numerical manifold method (NMM) framework equipped with a customized contact algorithm. The strength of rock sample containing a few sets of discontinuities is first investigated. The results of models with simple geometries are compared with the available analytical solutions to verify the developed computer code, whereas models with complex geometries are simulated to better understand the fundamental behavior and failure mechanism of jointed rock mass. Furthermore, the stability of jointed rock mass in an underground excavation is studied, where rock failure process is determined by the 3-D NMM simulation. The simulation results provide valuable guidance on excavation process design and stabilization design in rock engineering practice. |
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School of Civil and Environmental Engineering |
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School of Civil and Environmental Engineering He, L. Zhao, X. B. Zhao, Z. Y. An, Xinmei |
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Article |
author |
He, L. Zhao, X. B. Zhao, Z. Y. An, Xinmei |
author_sort |
He, L. |
title |
Investigation on strength and stability of jointed rock mass using three-dimensional numerical manifold method |
title_short |
Investigation on strength and stability of jointed rock mass using three-dimensional numerical manifold method |
title_full |
Investigation on strength and stability of jointed rock mass using three-dimensional numerical manifold method |
title_fullStr |
Investigation on strength and stability of jointed rock mass using three-dimensional numerical manifold method |
title_full_unstemmed |
Investigation on strength and stability of jointed rock mass using three-dimensional numerical manifold method |
title_sort |
investigation on strength and stability of jointed rock mass using three-dimensional numerical manifold method |
publishDate |
2013 |
url |
https://hdl.handle.net/10356/102383 http://hdl.handle.net/10220/16818 |
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1681034004701118464 |