基于波形反演的立陶宛地震震源机制

D. Malytskyy, V. Nikulins
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引用次数: 1

摘要

目的:确定立陶宛12.06.15地震震源机制(t0 = 08:18:26.4);55.52°n, 21.40°e;Hs = 0.9 км.;ML = 2.6),利用直接波和有限台站进行波形反演。方法:采用矩阵法模拟地震波在水平层状非均质弹性结构介质中的传播。得到了自由表面上位移波的关系,用于仅用直接P波和S波确定地震张量。介绍了基于已开发的点源方法的地震张量的确定和震源机制。因此,在正演模拟的基础上,发展了对矩张量分量的观测波形进行反演的数值技术。结果:本文提出了一种利用有限台站波形反演确定立陶宛12.06.15 (ML = 2.6)地震震源机制的方法。震源机制是利用两个台站(PABE, SLIТ)和三个台站(PABE, MTSE, SLIТ)的数据确定的。这些地震台站是波罗的海虚拟地震台网(BAVSEN)的一部分。科学新颖性:1;本文提出了一种矩张量反演方法,用于确定低地震活动性事件的震源机制。东波罗的海地区(EBR)是地震活动性较低的地区。2. 震源机制是根据有限几个台站的数据确定的。实际意义:震源机制确定的结果可用于利用有限台站研究低地震活动性地区的地震活动性。
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FOCAL MECHANISM OF THE LITHUANIAN EARTHQUAKE OF BASED ON WAVEFORM INVERSION
The aim: Determination of focal mechanism of Lithuanian earthquake of 12.06.15 (t0 = 08:18:26.4; 55.52° N, 21.40° E; hs = 0.9 км.; ML = 2.6) by waveform inversion using direct waves and a limited number of stations. Method: Matrix method is used for modelling of seismic wave propagation in the medium modelled as horizontally layered heterogeneous elastic structure. There were obtained the relations of displacement waves on the free surface that were used for seismic tensor determination using only direct P- and S- waves. Determination of seismic tensor and the focal mechanism on the base of developed method for a point source is described. Thus, based on forward modeling, numerical techniques are developed for the inversion of observed waveforms for the components of moment tensor. Results: In the paper, a method is presented for the focal mechanism determination of Lithuanian earthquake of 12.06.15 (ML = 2.6) by waveform inversion using limited number of stations. The focal mechanism is determined using the data from two stations: PABE, SLIТ and from three stations: PABE, MTSE, SLIТ. These seismic stations are the part of BAVSEN (BalticVirtualSeismicNetwork). Scientific novelty: 1. In the paper, a method is presented for moment tensor inversion for the focal mechanism determination of events with a low seismicity. The East Baltic region (EBR) is the region with low seismicity. 2. The focal mechanism is determined using the data from a limited number of stations. Practical significance: The results of focal mechanism determination can be used to study seismicity for regions with a low seismicity using a limited number of stations.
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