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首页> 外文期刊>Geophysical Research Letters >Bilinear Magnitude-Frequency Distributions and Characteristic Earthquakes During Hydraulic Fracturing
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Bilinear Magnitude-Frequency Distributions and Characteristic Earthquakes During Hydraulic Fracturing

机译:液压压裂过程中的Bilinear大小分布和特征地震

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摘要

Previous studies show that a temporal drop in the b value (slope) of magnitude-frequency distributions observed during hydraulic-fracturing operations could signify the activation of a preexisting fault system. Based on a new data set from Alberta, Canada, we provide a case study wherein events induced during hydraulic fracturing are localized within spatial clusters with a range of b values from similar to 1.0 to similar to 2.5. The distribution in b values is related to the orientation and depth distribution of these clusters. As a consequence of the superposition of spatially varying clusters, the catalog for the entire data set yields a bilinear magnitude distribution with exceptionally low apparent b value at larger magnitude levels. Several clusters are compatible (at 95% confidence level) with the characteristic-earthquake hypothesis, a controversial model for some fault systems wherein episodic large ruptures occur significantly above the maximum-likelihood Gutenberg-Richter relationship.
机译:以前的研究表明,在液压压裂操作期间观察到的大小频率分布的B值(斜率)的时间下降可以表示预先存在的故障系统的激活。基于从加拿大艾伯塔省的新数据集,我们提供了一种案例研究,其中液压压裂期间引起的事件在空间簇内局部化,其中B值与2.0类似于类似于2.5的B值。 B值的分布与这些簇的方向和深度分布有关。由于空间变化簇的叠加,整个数据集的目录产生了双线性幅度分布,其幅度较大的幅度较低的表观B值。几个集群兼容(以95%的置信水平),具有特征 - 地震假设,一些故障系统的争议模型,其中显着发生的大幅度大于最大似然性的古顿伯格关系。

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