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首页> 外文期刊>Journal of Asian earth sciences >The 2011 Sikkim earthquake (Mw 6.9) of the Himalaya: Estimates of earthquake source parameters and representability of attenuation characteristics
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The 2011 Sikkim earthquake (Mw 6.9) of the Himalaya: Estimates of earthquake source parameters and representability of attenuation characteristics

机译:喜马拉雅山2011年锡金地震(Mw 6.9):震源参数估计和衰减特征的可表示性

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摘要

The empirical accelerograms of the September 18, 2011, Sikkim earthquake (M-w = 6.9) have been used in the present study to estimate its source parameters and to identify a representative relation for the attenuation of peak ground acceleration with distance. The spectra of high energy packets observed in the SH waves (approximated by transverse components of accelerograms) has been modeled using Brune's model. A two-step procedure has been adopted for this purpose. The estimated source parameters of the 2011 Sikkim earthquake have been found to be as - corner frequency (f(c)): 0.09 Hz, seismic moment (M-0): (2.43 +/- 0.5) x 10(26) dyne-cm, stress drop (Delta sigma): 50.4 +/- 9.28 bars, and the moment magnitude (M-w): 6.87 +/- 0.05. These estimated values have been found to be consistent with those of reported values obtained using different data sets and procedures. The high-frequency earthquake ground motions are governed by stress drop at the source. Therefore a value of stress drop estimated here is useful for the simulation of earthquake strong ground motions in the region. The attenuation characteristics of observed peak ground acceleration as a function of distance have been compared with those of obtained using five empirical relations. It has been found that a relation given by McGuire (1978) represents the attenuation characteristics of peak ground acceleration is relatively better. This relation may be used for estimating the peak ground acceleration of similar magnitude for future earthquakes in the region. This relation is also useful for the simulation of earthquake strong ground motions in the region using envelope technique. The outcome of the present study is useful for the estimation of the seismic hazard of the Sikkim region of the Himalaya.
机译:2011年9月18日锡金地震(M-w = 6.9)的经验加速度图已用于本研究中,以估算其震源参数,并确定峰值加速度随距离衰减的代表性关系。在SH波中观测到的高能数据包的光谱(由加速度图的横向分量近似)已经使用Brune模型进行了建模。为此,采用了两步过程。已发现2011年锡金地震的估计震源参数为-拐角频率(f(c)):0.09 Hz,地震矩(M-0):(2.43 +/- 0.5)x 10(26)达因-厘米,应力降(Delta sigma):50.4 +/- 9.28巴,力矩大小(Mw):6.87 +/- 0.05。已发现这些估计值与使用不同数据集和程序获得的报告值一致。高频地震地震动受震源处的应力降控制。因此,此处估算的应力降值对于模拟该地区的强烈地震运动很有用。已将观测到的峰值地面加速度随距离变化的衰减特性与使用五个经验关系式获得的衰减特性进行了比较。已经发现,McGuire(1978)给出的关系表示峰值地面加速度的衰减特性相对较好。该关系可以用于估计该地区未来地震的相似大小的峰值地面加速度。该关系对于使用包络技术模拟该区域的强烈地震运动也很有用。本研究的结果对于估计喜马拉雅山锡金地区的地震危险性很有用。

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