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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Source parameters and three-dimensional attenuation structure from the inversion of microearthquake pulse width data: Method and synthetic tests
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Source parameters and three-dimensional attenuation structure from the inversion of microearthquake pulse width data: Method and synthetic tests

机译:微地震脉宽数据反演的震源参数和三维衰减结构:方法与综合测试

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We propose a new method to determine source parameters and attenuation structure of a three-dimensional medium based on first P rise time and total pulse width measurements from microearthquake data. The effects of fault finiteness on seismic radiation are taken into account by assuming the rupture model for a circular crack of Sato and Hirasawa (1973). Ray theory synthetic seismograms in a constant Q anelastic medium are computed to derive a set of nonlinear equations which relate the source and attenuation parameters (fault radius, orientation of the fault plane, and quality factor) to the pulse width data (half and total duration of the P waveforms). The numerically built relationships are used to compute the direct problem in the framework of a nonlinear inversion scheme, based on the modified downhill Simplex method. The validity and robustness of the inversion method are tested by synthetic simulations by assuming the sources and receivers configuration of the seismic passive experiment conducted in the Campi Flegrei caldera (southern Italy) during the last microearthquake crisis (1982-1984). Different heterogeneous Q models have been considered in order to assess the uncertainty and resolution of source and attenuation parameters for the given acquisition layout. The results of this simulation study indicate that first pulse width data from a local network permit retrieval with sufficient accuracy of the heterogeneous Q structure and fault radii. A rather dense azimuthal coverage of the sources is instead needed to recover the angles (in particular, the fault strike) which define the fault orientation. [References: 46]
机译:我们提出了一种新的方法,该方法可以根据微地震数据中的第一个P上升时间和总脉冲宽度测量值来确定三维介质的源参数和衰减结构。通过假设Sato和Hirasawa(1973)的圆形裂纹的破裂模型,考虑了断层有限性对地震辐射的影响。计算恒定Q非弹性介质中的射线理论合成地震图,以得出一组非线性方程,这些方程将震源和衰减参数(断层半径,断层面的方向和品质因数)与脉冲宽度数据(一半和总持续时间)相关联P个波形)。基于改进的下坡单纯形法,在非线性反演方案的框架内,使用数字建立的关系来计算直接问题。通过假设在上一次微地震危机(1982年至1984年)在Campi Flegrei火山口(意大利南部)进行的地震被动实验的震源和接收器配置,通过综合模拟测试了反演方法的有效性和鲁棒性。为了评估给定采集布局的信号源和衰减参数的不确定性和分辨率,已经考虑了不同的异构Q模型。该模拟研究的结果表明,来自本地网络的第一脉冲宽度数据允许以足够精确的异质Q结构和故障半径进行检索。取而代之的是,需要源的相当密集的方位角覆盖以恢复限定断层定向的角度(特别是断层走向)。 [参考:46]

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