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Microseismic Event Location by Considering the Influence of the Empty Area in an Excavated Tunnel

机译:通过考虑空区在挖掘隧道中的影响,微震事件定位

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The velocity model is a key factor that affects the accuracy of microseismic event location around tunnels. In this paper, we consider the effect of the empty area on the microseismic event location and present a 3D heterogeneous velocity model for excavated tunnels. The grid-based heterogeneous velocity model can describe a 3D arbitrarily complex velocity model, where the microseismic monitoring areas are divided into many blocks. The residual between the theoretical arrival time calculated by the fast marching method (FMM) and the observed arrival time is used to identify the block with the smallest residual. Particle swarm optimization (PSO) is used to improve the location accuracy in this block. Synthetic tests show that the accuracy of the microseismic event location based on the heterogeneous velocity model was higher than that based on the single velocity model, independent of whether an arrival time error was considered. We used the heterogeneous velocity model to locate 7 blasting events and 44 microseismic events with a good waveform quality in the Qinling No. 4 tunnel of the Yinhanjiwei project from 6 June 2017 to 13 June 2017 and compared the location results of the heterogeneous-velocity model with those of the single-velocity model. The results of this case study show that the events located by the heterogeneous velocity model were concentrated around the working face, which matched the actual conditions of the project, while the events located by the single-velocity model were scattered and far from the working face.
机译:速度模型是影响隧道周围微震事件位置的准确性的关键因素。在本文中,我们考虑空区域对微震事件位置的影响,并为挖掘隧道提供了一种3D异构速度模型。基于网格的异构速度模型可以描述3D任意复杂的速度模型,其中微震监测区域被分成许多块。通过快速行进方法(FMM)计算的理论到达时间与观察到的到达时间之间的残余用于识别具有最小残留的块。粒子群优化(PSO)用于提高该块中的位置精度。合成试验表明,基于异构速度模型的微震事件位置的准确性高于单速度模型的微震事件位置,与考虑到达时间误差是否无关。我们利用异质速度模型来定位7次爆破事件和44名微震事件,在2017年6月6日至2017年6月13日秦岭4隧道中具有良好的波形质量,并比较了异质速度模型的位置结果与单速模型的那些。本案例研究的结果表明,由异构速度模型的事件围绕工作面集中,与项目的实际情况相匹配,而单速模型的事件散布,远离工作面。

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