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3D Acoustic and Microseismic Location of Collapse Events in Complex, 3D Geological Structures

机译:复杂的折叠事件的3D声学和微震位置,3D地质结构

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Passive microseismics is a well developed technique that has gained importance in petroleum exploration operations as well as in geohazard assessment. When applied in complex geological environments, it requires advanced processing capabilities to ensure useful accuracy in the source location and characterization. Here we investigate a fast marching method to determine the travel-time field, rays and ray take-off angles in complex 3D media, for application with a direct-search event location method. We then illustrate and discuss the potential of the chosen methodology in the mining context. This methodology allows improvements in acoustic monitoring of large-scale underground mines by taking into account the intrinsic characteristics of propagation of the acoustic waves. Ongoing work on a dataset collected during the monitoring of a large-scale salt cavern collapse is also discussed. We expect that the use of an evolving 3D model will help to reduce the location errors and improve the dataset analysis, improving risk management for time-varying collapse events.
机译:被动微震是一种发达的技术,在石油勘探业务以及地质血清评估中获得了重要性。应用在复杂的地质环境中时,它需要先进的处理能力,以确保源位置和表征中的有用准确性。在这里,我们调查了一种快速行进的方法,以确定复杂3D介质中的旅行时间字段,光线和射线起飞角,用于使用直接搜索事件定位方法应用。然后,我们说明并讨论采矿背景中所选方法的潜力。该方法通过考虑声波的传播的内在特征,允许改进大​​规模地区的大规模地区的声学监测。还讨论了在监测大规模盐洞穴崩溃期间收集的数据集的持续工作。我们希望使用不断发展的3D模型将有助于降低位置错误并改善数据集分析,从而改善时变崩溃事件的风险管理。

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