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Numerical simulation on rockburst of underground opening triggered by dynamic disturbance

机译:动态扰动触发地下洞室岩爆的数值模拟

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The dynamic disturbance, which is termed as the time-dependent loading such as explosion, vibration, stress impact from neighboring rockbursts, earthquakes, may trigger the rockbursts around the underground opening at depth. A numerical model capable of studying the dynamic failure process of rock under coupled static geo-stress and dynamic disturbance is proposed, and it is implemented into the Rock Failure Process Analysis (RFPA), a general finite element package to analyze the damage and failure process of engineering materials such as rock and concrete. Based on the consideration of the static geo-stress, the RFPA-Dynamics is used to simulate the rockburst that is deemed to be triggered by dynamic disturbance around the deep underground opening. The effect of lateral pressure coefficient and dynamic disturbance waveform on the development of failure zone around the underground opening is numerically simulated. The numerical results indicate that the dynamic disturbance is one of the most important mechanisms that trigger the rockbursts around underground opening. Therefore, it is of theoretical and practical significance to investigate the effect of dynamic disturbance on the rockbursts of underground opening, especially for the underground excavation at depth where the surrounding rockmass is highly stressed. The numerical results also reveal that the contribution of the dynamic disturbances is closely pertinent to both the static geo-stress condition and the waveforms of the dynamic disturbance. In general, dynamic disturbance brings about the greater influences on the stability of underground opening with its increasing magnitude and prolonged duration. However, with regard to the specific static geo-stress condition and characteristics of dynamic disturbance, the contribution of dynamic disturbance to trigger the rockbursts must be examined based on numerical analysis according to the specific geo-stress conditions and characteristics of the dynamic disturbance.
机译:动态扰动被称为随时间变化的载荷,例如爆炸,振动,邻近岩爆的应力冲击,地震等,可能会触发深部地下洞口的岩爆。提出了一种能够研究岩石在静态地应力和动力干扰作用下的动态破坏过程的数值模型,并将其应用于岩石破坏过程分析(RFPA),这是一个用于分析破坏和破坏过程的通用有限元程序包。工程材料,例如岩石和混凝土。基于静态地应力的考虑,RFPA-Dynamics用于模拟被认为是由深部地下洞口周围的动态扰动触发的岩爆。数值模拟了侧向压力系数和动态扰动波形对地下洞口破坏区域发展的影响。数值结果表明,动力扰动是触发地下洞室岩爆的最重要机制之一。因此,研究动力扰动对地下洞室岩爆的影响具有重要的理论和实践意义,特别是对于围岩压力较大的深部地下开挖。数值结果还表明,动态扰动的贡献与静态地应力条件和动态扰动的波形都密切相关。通常,动态扰动随着其增大的幅度和持续时间的延长而对地下洞室的稳定性产生更大的影响。但是,关于特定的静态地应力条件和动态扰动的特性,必须根据特定的地应力条件和动态扰动的特性,通过数值分析来研究动态扰动对触发岩爆的贡献。

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