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Numerical Modeling of a Blast-Induced Landslide

机译:爆炸诱发滑坡的数值模拟

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A 2D dynamic finite element analysis (FEA) was carried out to simulate the stress wave propagation and accumulated strains of a blasting-induced landslide in sensitive clay that took place near the city of Namsos, Norway in 2009. The blasting triggered a large unintended transient motion of the rock mass with unfavorable weak planes and fault zones. The transient penetration of the rock mass into the clay triggered the devastating slide. A linear elastic model was used for the undrained response of soil. The interaction between soil and the blasted rock was modeled by means of an interface. The blast load was defined as a triangular velocity - time function with a peak value of 10 m/s. In accordance with the field observations after the slide, the predicted deformation of the rock face out into the sensitive clay was around one meter. The results showed a clear trend of the blast impact that diminished with distance. Stability checks using the volume of remolded clay determined from the dynamic analysis revealed that the factor of safety of the slope was reduced to less than unity following the blast.
机译:进行了二维动态有限元分析(FEA),以模拟应力波传播和爆破诱导的滑坡在2009年挪威Namsos市附近发生的敏感黏土中的累积应变。爆破引发了意外的大瞬变不利的弱平面和断层带的岩体运动。岩体的瞬时渗透到粘土中引发了破坏性的滑坡。线性弹性模型用于土壤的不排水响应。土壤和爆破岩石之间的相互作用是通过界面建模的。爆炸载荷定义为三角速度-时间函数,峰值为10 m / s。根据滑坡后的现场观察,预测出的岩石面朝着敏感粘土的变形约为1米。结果表明,爆炸影响的明显趋势随着距离的增加而减小。使用由动态分析确定的重塑粘土的体积进行的稳定性检查显示,爆炸发生后,边坡的安全系数降低到小于1。

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