露天地下联合开采中地下爆破开采对露天边坡的影响研究

    Study on the influence of underground blasting mining on open-pit slope in combined open-pit and underground mining

    • 摘要: 为研究露天地下联合开采过程中地下爆破开采对露天边坡的影响,利用有限元模拟软件ANSYS/LS-DYNA建立了最危险工况下地下爆破开挖的简化模型,并对模型中爆源至露天边坡面的岩体损伤扩展过程及爆破振动速度衰减规律进行了分析。在此基础上,将模拟所得到的数据运用到现场试验中进行验证。研究结果表明:当地下采场采用未考虑高程放大效应影响的理论安全最大段药量60 kg进行爆破时,露天边坡实际振动速度将超出其安全允许阈值10 cm/s,影响边坡的安全与稳定;在地下爆破开采过程中,首先在炮孔附近岩体出现损伤,随着应力波的传播,在距离爆源最近的边坡坡脚处出现损伤,而后沿边坡坡面进行扩展,并逐渐扩展至整个边坡;而岩体内爆破峰值振动速度随着爆源距的增大而减小,衰减速度呈现出先衰减快,后衰减慢的规律,但在临近边坡坡面处峰值振动速度出现放大效应,且爆源至露天边坡坡面的损伤演化过程与振动速度衰减规律相互对应;为确保在最危险工况下边坡的安全与稳定,在实际工程中地下开采最大段药量应当控制在40 kg以内。研究结果可为类似矿山的安全生产提供借鉴。

       

      Abstract: In order to study the influence of underground blasting mining on open-pit slope in the process of combined open-pit and underground mining, a simplified model of underground blasting excavation under the most dangerous working condition is established by using finite element simulation software ANSYS/LS-DYNA. The damage expansion process of rock mass from blasting source to slope and the attenuation law of blasting vibration velocity in the model are analyzed. On this basis, the simulated data are verified in the field test. The result show that the local lower stope is blasted with a theoretical maximum charge quantity of 60 kg without considering the effect of elevation amplification, the actual vibration velocity of the open-pit slope will exceed its safety allowable threshold of 10 cm/s, affecting the safety and stability of the slope. In the process of underground blasting mining, the damage first occurs in the rock mass near the blasthole, and with the propagation of the stress wave, the damage occurs at the foot of the slope closest to the blasting source, and then extends along the slope surface, and gradually extends to the whole slope. However, the peak vibration velocity of blasting in rock mass decreases with the increase of blasting source distance, and the attenuation velocity first attenuates quickly and then slowly, but the vibration velocity appears magnifying effect at the slope surface near the peak slope. And the damage evolution process from the blasting source to the slope surface corresponds to the attenuation law of vibration velocity. In order to ensure the safety and stability of open-pit slope, the maximum charge quantity of underground mining should be controlled within 40 kg in practical engineering. The research results can provide reference for the safety production of similar mines.

       

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