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The Analysis of Blasting Seismic Wave Passing Through Cavity Based on SPH-FEM Coupling Method

机译:基于SPH-FEM耦合方法的爆破地震波通过型腔分析

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Based on the secondary development of LS-DYNA, smoothed particle hydrodynamics(SPH) method is implemented into the blasting vibration method. A method of SPH used in the near zone and FEM used in the far zone is proposed. Dynamic effect of deep hole bench blasting is simulated with this method based on the Specific engineering example. The results show that SPH-FEM method could simulate the large deformation in the near zone. The comparison between blasting vibration monitoring and numerical results demonstrate that SPH-FEM method could forecast the blasting vibration and dynamic response in far zone. The mode is then used to assess the blasting seismic wave passing through the cavity adjacent to upper bench blasting. The results show that the peak particle velocity of measuring points above the mined-out area have presented the obvious amplification phenomenon, owing to wave reflection from the cavity which is about 5 m underneath the ground surface.
机译:在LS-DYNA的二次开发基础上,将光滑粒子流体动力学(SPH)方法应用于爆破振动方法中。提出了一种在近区使用SPH,在远区使用FEM的方法。根据具体的工程实例,用这种方法模拟了深孔台面爆破的动力效果。结果表明,SPH-FEM方法可以模拟近区的大变形。爆破振动监测与数值结果的比较表明,SPH-FEM方法可以预测远区的爆破振动和动力响应。然后将该模式用于评估穿过邻近上台阶爆破的空腔的爆破地震波。结果表明,采空区上方测量点的峰值粒子速度呈现明显的放大现象,这是由于地下约5 m的空腔反射波所致。

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