Focal Mechanisms of Small Earthquakes within the Pacific Plate near the Japan Trench

S. Koga, Y. Ito, R. Hino, M. Shinohara, N. Umino
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引用次数: 3

Abstract

A double-planed shallow seismic zone has been found in the northeastern Japan forearc region. However, the characterizations of the focal mechanisms of earthquakes in this zone, especially the lower plane events, cannot be carried out adequately due to low seismicity and poor station coverage on the focal sphere of the onshore P-wave polarity data. In this study, we determine the focal depth using the sP depth phase and the focal mechanisms using the P-wave initial motions observed by the ocean bottom cabled seismic stations and temporary autonomous ocean bottom seismic networks off Miyagi, as well as the onshore seismic networks. Seven focal mechanism solutions of events were precisely determined. Using the classification based on the dip angles of the T, B and P axes, we classified 21 weakly constrained focal mechanisms of other events having poor station coverage. All the determined solutions were of the thrust-faulting type regardless of the focal depth. The offshore observations helped considerably in constraining the focal mechanisms of these far-offshore earthquakes, especially their rake angles. Although previous studies had reported that the focal mechanisms of the upper and lower plane events show predominantly normal and reverse faulting respectively, our result showed that the thrust events in the upper plane seem to occur on the plate boundary. We found that the focal mechanisms change from normal faulting in the upper plane to reverse faulting in the lower plane at a depth of 15km from the plate boundary, possibly defining the depth of the neutral plane in the northeastern Japan forearc region included in the source area of the 1933 Mw8.4 Sanriku earthquake. The western edge of the normal faulting events along the upper plane is located about 70km inward from the trench axis. These results suggest that the earthquake-generating stress field in the double-planed shallow and deep seismic zone in the northeastern Japan arc can be explained by the bending-unbending model of the subducting Pacific plate.
日本海沟附近太平洋板块内小地震震源机制
在日本东北部的弧前地区发现了一个双平面浅层地震带。然而,由于地震活动性低,且岸上p波极性资料震源球上的台站覆盖较差,该地区地震的震源机制特征,特别是下平面地震的震源机制特征不能得到充分的描述。在本研究中,我们利用sP深度相位确定震源深度,并利用海底电缆地震台站和宫城附近的临时自主海底地震台网以及陆上地震台网观测到的p波初始运动来确定震源机制。精确地确定了事件的7个焦点机制解。采用基于T、B、P轴倾角的分类方法,对21个弱约束震源机制进行了分类。无论震源深度如何,所确定的解均为逆冲断裂型。近海观测对限制这些远海地震的震源机制,特别是震源角有很大帮助。虽然以往的研究报道上、下平面事件的震源机制分别以正断层和逆断层为主,但我们的研究结果表明,上平面的逆冲事件似乎发生在板块边界上。研究发现,在距板块边界15km深度处,震源机制由上平面正断层向下平面逆断层转变,可能定义了1933年Mw8.4三陆地震震源区所包括的日本东北部弧前区中性面深度。正断层事件沿上平面的西缘位于距海沟轴线向内约70km处。这些结果表明,日本弧东北部深浅双平面地震带的地震应力场可以用太平洋板块俯冲的弯曲-不弯曲模型来解释。
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