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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Joint inversion of source location and focal mechanism of microseismicity
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Joint inversion of source location and focal mechanism of microseismicity

机译:震源位置和微震震源机制的联合反演

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The seismic focal mechanism (FM) is an effective property to indicate source physics, as well as stress and strain distribution in regional, local, and microscales. We have developed an algorithm to jointly invert for the FM and source locations. For a given velocity structure, all possible combinations of source locations (x, y, and z) and FM (strike, dip, and rake) were used to compute traveltimes and polarities of waveforms. Correcting normal moveout times and polarities and stacking all waveforms, the (x, y, z, strike, dip, and rake) combination that gave the strongest stacking power was identified as the optimal solution. Compared with the traditional source scanning algorithm (SSA) that only scanned source locations, this algorithm was thereby called the joint source scanning algorithm (jSSA). The jSSA method was tested rigorously, and it was applied to a hydraulic fracturing data set. Our work determined several advantages against the SSA method: (1) The jSSA method could identify many shear sources that could not be detected by the SSA method due to polarity variation; (2) the jSSA almost always yielded more events than the SSA method, and the added events could often provide much better characterization of the hydraulic fracturing; (3) the statistics of source mechanisms could provide additional knowledge on the orientation of fractures, as well as the local and regional stress and strain field; and (4) for those events that were detected by both methods, the stacking power of jSSA was always higher than that obtained in SSA.
机译:地震震源机制(FM)是指示源物理以及区域,局部和微观尺度上应力和应变分布的有效属性。我们已经开发了一种算法,可以对FM和源位置进行联合求逆。对于给定的速度结构,使用震源位置(x,y和z)和FM(打击,下降和倾斜)的所有可能组合来计算波形的传播时间和极性。校正正常的运动时间和极性并叠加所有波形,可以确定叠加强度最高的(x,y,z,打击,倾斜和倾斜)组合是最佳解决方案。与仅扫描源位置的传统源扫描算法(SSA)相比,该算法因此被称为联合源扫描算法(jSSA)。 jSSA方法经过严格测试,并应用于水力压裂数据集。我们的工作确定了相对于SSA方法的几个优点:(1)jSSA方法可以识别由于极性变化而无法通过SSA方法检测到的许多剪切源; (2)与SSA方法相比,jSSA几乎总是产生更多的事件,并且增加的事件通常可以提供更好的水力压裂特征; (3)震源机制的统计数据可以提供有关裂缝方向以及局部和区域应力和应变场的更多知识; (4)对于这两种方法检测到的事件,jSSA的堆叠能力始终高于SSA中获得的堆叠能力。

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