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Simulation of Unstable Fault Slip in Granite Using a Bonded-particle Model

机译:基于键合颗粒模型的花岗岩不稳定断层滑动模拟

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— A bonded-particle model is used to simulate shear-type microseismic events induced by tunnel excavation in granite. The model represents a volume of granite by an assembly of 50,000 individual particles bonded together at points of contact. A plane of weakness is included in the model and this plane is subjected to increasing shear load while the normal load across the plane is held constant. As shear stress in the model increases, bonds begin to break and small acoustic emissions (AE) result. After enough bonds have broken, macro-slip occurs across the large portions of the fault in an unstable manner. Since the model is run dynamically, seismic source information can be calculated for the simulated AE and macro-slip events. This information is compared with actual results obtained from seismic monitoring around an underground excavation. Although the modelled events exhibit larger magnitudes than the actual recorded events, there are many similarities between the model and the actual results, namely the presence of foreshocks before the macro-slip events and the patterns of energy release during loading. In particular, the model provides the ability to examine the complexity of the slip events in detail.
机译:—使用键合颗粒模型来模拟花岗岩中隧道开挖引起的剪切型微地震事件。该模型通过在接触点结合在一起的50,000个单个颗粒的集合来表示花岗岩的体积。模型中包括一个薄弱平面,该平面承受的剪切载荷不断增加,而该平面上的法向载荷则保持恒定。随着模型中剪应力的增加,键开始断裂,从而产生较小的声发射(AE)。断开足够多的粘结后,整个断层的大部分都会以不稳定的方式发生宏观滑动。由于该模型是动态运行的,因此可以为模拟的AE和宏观滑动事件计算地震震源信息。将该信息与从地下基坑周围的地震监测获得的实际结果进行比较。尽管建模事件比实际记录的事件显示出更大的幅度,但模型与实际结果之间存在许多相似之处,即宏观滑移事件之前存在前震和加载过程中能量释放的模式。特别地,该模型提供了详细检查滑动事件的复杂性的能力。

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