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      Numerical Simulation of Blast Vibration and Crack Forming Effect of Rock-Anchored Beam Excavation in Deep Underground Caverns

      , , , , , ,
      Shock and Vibration
      Hindawi Limited

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          Abstract

          Aiming at surrounding rock damage induced by dynamic disturbance from blasting excavation of rock-anchored beam in rock mass at moderate or far distance in underground cavern, numerical model of different linear charging density and crustal stress in underground cavern is established by adopting dynamic finite element software based on borehole layout, charging, and rock parameter of the actual situation of a certain hydropower station. Through comparison in vibration velocity, contour surface of rock mass excavation, and the crushing extent of excavated rock mass between calculation result and field monitoring, optimum linear charging density of blast hole is determined. Studies are also conducted on rock mass vibration in moderate or far distance to blasting source, the damage of surrounding rock in near-field to blasting source, and crushing degree of excavated rock mass under various in situ stress conditions. Results indicate that, within certain range of in situ stress, the blasting vibration is independent of in situ stress, while when in situ stress is increasing above certain value, the blasting vibration velocity will be increasing and the damage of surrounding rock and the crushing degree of excavated rock mass will be decreasing.

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          Prediction of blast-induced ground vibration using artificial neural network

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            Damage evolution mechanisms of rock in deep tunnels induced by cut blasting

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              • Record: found
              • Abstract: not found
              • Article: not found

              Dynamic response of rock mass induced by the transient release of in-situ stress

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                Author and article information

                Journal
                Shock and Vibration
                Shock and Vibration
                Hindawi Limited
                1070-9622
                1875-9203
                2017
                2017
                : 2017
                :
                : 1-13
                Article
                10.1155/2017/1812080
                d779c7d7-84bf-437f-8b4f-390ec310795d
                © 2017

                http://creativecommons.org/licenses/by/4.0/

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