论文标题

诱导地震源参数,衰减和芬诺斯卡盾牌中波形信封的现场影响

Induced earthquake source parameters, attenuation, and site effects from waveform envelopes in the Fennoscandian Shield

论文作者

Eulenfeld, Tom, Hillers, Gregor, Vuorinen, Tommi A. T., Wegler, Ulrich

论文摘要

我们分析了233和22 $ m _ {\ text l} $ 0.0至$ m _ {\ text L} $ 1.8地震的信封的$ 0.0至$ m _ {\ text l} $ 1.8地震。我们使用基于辐射转移的合成信封在3 Hz至200 Hz频率范围内将固有衰减分开,并确定固有的衰减和剪切波的散射强度。位移光谱产生比例关系,与自相似性的一般偏差,尽管来自2020年较弱的刺激,但更有争议的信号。与2018年地震相比,2020年地震的局部幅度往往较小。我们在流体对破裂速度或中等特性的影响的情况下讨论了这些连接。位点项表明,相对于两个参考钻孔位点的光谱放大在其他传感器上不是中性的。在大于30 Hz的频率下观察到最大的变化。固有的衰减非常低,而$ q _ {\ text I}^{ - 1} $ values to $ 2.4 \ times 10^{ - 5} $在20 Hz处,可以在$ {\ sim} $ 50 km深的Moho中观察差异反射。散射强度在全球观察到的数据范围内,$ q _ {\ text {sc}}}^{ - 1} $介于$ 10^{ - 3} $和$ 10^{ - 4} $之间。在回顾性监视模式下,应用的QOPEN分析程序在2020年数据中的应用表明其多功能性是地震性处理工具。各种结果对缩放关系,危害评估和地面运动建模以及使用弹道和散射的波场进行成像和监测具有影响。

We analyze envelopes of 233 and 22 $M_{\text L}$0.0 to $M_{\text L}$1.8 earthquakes induced by two geothermal stimulations in the Helsinki, Finland, metropolitan area. We separate source spectra and site terms and determine intrinsic attenuation and the scattering strength of shear waves in the 3 Hz to 200 Hz frequency range using radiative transfer based synthetic envelopes. Displacement spectra yield scaling relations with a general deviation from self-similarity, with a stronger albeit more controversial signal from the weaker 2020 stimulation. The 2020 earthquakes also tend to have a smaller local magnitude compared to 2018 earthquakes with the same moment magnitude. We discuss these connections in the context of fluid effects on rupture speed or medium properties. Site terms demonstrate that the spectral amplification relative to two reference borehole sites is not neutral at the other sensors; largest variations are observed at surface stations at frequencies larger than 30 Hz. Intrinsic attenuation is exceptionally low with $Q_{\text i}^{-1}$ values down to $2.4\times 10^{-5}$ at 20 Hz, which allows the observation of a diffuse reflection at the ${\sim}$50 km deep Moho. Scattering strength is in the range of globally observed data with $Q_{\text{sc}}^{-1}$ between $10^{-3}$ and $10^{-4}$. The application of the employed Qopen analysis program to the 2020 data in a retrospective monitoring mode demonstrates its versatility as a seismicity processing tool. The diverse results have implications for scaling relations, hazard assessment and ground motion modeling, and imaging and monitoring using ballistic and scattered wavefields in the crystalline Fennoscandian Shield environment.

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