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Source parameters of regional earthquakes recorded by Israel Seismic Network: implications for earthquake scaling

机译:以色列地震网络记录的区域地震的源参数:地震缩放的影响

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The source properties and scaling relationships for small and moderate earthquakes occurring in Israel and adjacent areas are investigated. We determine source parameters such as corner frequency, seismic moment, static stress drop, and source radius using three-component short period and broadband seismograms recorded by the Israel Seismic Network from 1993 to 2010. In this study about 2000 seismograms from 300 regional earthquakes in the magnitude range of 1.5 <= M-d <= 5.2 have been analyzed. To identify possible differences in source scaling depending on regional features the analysis is performed separately for three regional earthquake sequences that occurred in Southern Lebanon, Dead Sea basin and Gulf of Aqaba. The analyzed regional earthquakes exhibit corner frequencies ranging from 0.9 to 9.7 Hz, which correspond to seismic moments from 1.580E+11 to 5.82E+16 Nm. Our estimates of Brune's stress drop for regional earthquakes are in the range of 0.005-19 MPa with a clear tendency to higher stress drops for larger events. Source radii for the earthquake range from similar to 100 to similar to 1600 m. Source spectra of small to moderate earthquakes are normally compared with the classical Brune one-corner spectral model, which includes a flat portion at low frequencies and decreasing as omega(-2) at high frequencies. However, some spectra in the dataset are complex and a second corner frequency is apparent, exhibiting substantial deviations of individual source spectra from the ideal omega(-2) spectral shape.
机译:研究了以色列和相邻地区发生的小型和适度地震的源特性和缩放关系。从1993年到2010年,我们使用由以色列地震网络记录的三分短时期和宽带地震图等源参数等源参数,例如由以色列地震网络记录的三个组件短期和宽带地震图。在本研究中,从300个区域地震中大约2000年的地震图已经分析了1.5 <= MD <= 5.2的幅度范围。为了确定根据区域特征的源缩放的可能差异,分析是分别进行的三个区域地震序列,即在黎巴嫩南部,死海盆地和AQABA湾的阵地发生。分析的区域地震表现出0.9至9.7 Hz的角频率,其对应于1.580e + 11至5.82e + 16 nm的地震矩。我们对区域地震的古老压力下降的估计值在0.005-19MPa的范围内,对于更大的事件来说,较高的压力下降倾向。地震的源半径范围与100相似到1600米。通常与经典的古代古代地震的源光谱与经典的古代的一角光谱模型相比,其包括低频下的平坦部分,并且在高频下减小为Omega(-2)。然而,数据集中的一些光谱是复杂的并且第二个角频率是明显的,表现出各个源光谱与理想ω(-2)光谱形状的大量偏差。

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