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Visualizing Microseismic Distributions using Cumulative Image Volumes

机译:使用累积图像容量可视化微震分布

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We present a method for visualizing microseismic event distributions using the accumulation of image volumes. The procedure is demonstrated using a synthetic dataset designed to mimic the microseismic event distributions that we have observed during hydraulic fracturing. Our results show that cumulative images provide a potentially useful tool for the investigation and interpretation of event distributions. In particular our results highlight the importance of multicomponent data and S-wave information in constructing source images. The production of cumulative images for individual moment tensor components also allows for the identification and mapping of source mechanisms without computation of point source location. Such imaging and visualisation methods avoid the unnecessary step of abstracting microseismic event populations as a group of point sources and instead represent the population of events as a multi-dimensional representation of the frac itself, describing frac development in both space, time and mechanism.
机译:我们介绍了一种使用图像体积的累积来可视化微震事件分布的方法。使用旨在模拟我们在水力压裂期间观察到的微震事件分布的合成数据集来证明该过程。我们的研究结果表明,累积图像为事件分布的调查和解释提供了一个潜在的有用工具。特别是我们的结果突出了多组分数据和S波信息在构造源图像中的重要性。用于各个时刻张量组件的累积图像的产生还允许识别和映射源机制而不计算点源位置。这种成像和可视化方法避免了将微震事件群体作为一组点源提取的不必要步骤,而是将事件群体表示为FRAC本身的多维表示,描述了空间,时间和机制中的FRAC开发。

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