Experimental study on the stability of surrounding rock in tunnel blasting construction

Hongxian Fu, Hong Kong, Jinke Wu

Experimental study on the stability of surrounding rock in tunnel blasting construction

Číslo: 1/2018
Periodikum: Civil Engineering Journal
DOI: 10.14311/CEJ.2018.01.0007

Klíčová slova: Tunnel Engineering, Blasting, Attenuation Law of Blast Vibration, Stability, Tunelové inženýrství, trhací práce, útlumový zákon vibrace, stabilita

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Anotace: In this study, criteria and blasting technologies are introduced in order to control the stability of surrounding rock of tunnel built using drill-and-blast safety. The paper is composed of three parts, namely, a blast vibration propagation law in roof surrounding rock in close proximity to tunnel face, two formulae to calculate particle critical vibration velocity of shotcrete and key structural element at the roof of tunnel, and innovative technologies of tunnel blasting. The blast vibration propagation law is the base to control the stability of surrounding rock during tunnel blasting. Based on Morhr-Coulomb criterion and the dynamic analysis, two formulae to calculate the critical particle vibration velocity are proposed. Based on a series of trial blasts using electronic detonators, two innovative blasting technologies are derived. One is the blast holes detonated one by one by using electronic detonator, and another is the blast holes detonated by combining initiation system of electronic detonators and nonel detonators. The use of electronic detonators in tunnel blasting not only leads to a smaller blast vibration but also to a smaller extent of the EDZ (excavation damaged zone).