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Structural variation in the incoming Philippine Sea plate along the Nankai Trough

机译:沿南海海槽进入菲律宾海板块的结构变化

摘要

The next large-thrust earthquake along the Nankai Trough, southwest Japan is concerned to occur within this century. Nonvolcanic deep low-frequency tremors and earthquakes are observed around the down-dip limit of the coseismic rupture zone of the last Tonankai and Nankai earthquakes [Obara, 2002]. One of the causes of these low-frequency seismic phenomena is considered to be fluid generated by dehydration processes from the subducting slab. It is important to investigate structural variation in the incoming Philippine Sea plate, including its fluid content to understand the generation of the low-frequency seismic phenomena as well as large-thrust earthquakes. In 2014, we conducted the seismic refraction and reflection survey in the northern margin of the Shikoku Basin, where the Philippine Sea plate is subducting beneath the Eurasia plate at the Nankai Trough. We conducted a 360km long seismic profile about 50-60km seaward of the deformation front along the Nankai Trough. 35 OBSs were deployed along the profile with the interval of 10km. A tuned airgun array shot with a total volume of 7800 cu. in. every 200m for OBSs, and 380 cu. in. every 37.5m for a 192-channel, 1.2km-long hydrophone streamer. In the time-migrated reflection section, variation in the sedimentary layer and basement reflection can be recognized off Shikoku, which may correspond with the boundary of the plate age proposed by magnetic lineation [Okino et al., 1999]. In the southwestern part of the profile, the basement reflection is not always clear, and shows smooth structure. Comparatively in the northeastern part, basement changes in depth drastically with prominent reflection signals. In the wide-angle OBS data, PS converted waves are clearly observed over along the seismic profile. In particular, PS converted waves refracted from the uppermost mantle can be remarkably recognized in the northeastern half of the profile. We will show the structural variation of the oceanic crust of the incoming plate, which may be related to the formation of the Shikoku Basin as well as the generation of the various seismic activities including the low-frequency events, by using OBS data. This study is part of ‘Research project for compound disaster mitigation on the great earthquakes and tsunamis around the Nankai Trough region’ funded by MEXT, Japan.
机译:沿着日本西南部的南海海槽发生的下一次大推力地震将在本世纪内发生。在上一次Tonankai和Nankai地震的同震破裂带的下倾极限附近观察到了非火山性的深部地震和地震[Obara,2002]。这些低频地震现象的原因之一被认为是俯冲板块脱水过程中产生的流体。重要的是调查进入的菲律宾海板块的结构变化,包括其流体含量,以了解低频地震现象以及大推力地震的产生。 2014年,我们在四国盆地北缘进行了地震折射和反射调查,菲律宾海板块在南海海槽的欧亚大陆板块下方俯冲。我们沿着南海海槽在变形锋向海约50-60公里处进行了360公里长的地震剖面。沿剖面以间隔10公里部署了35个OBS。调谐式气枪阵列,总容量为7800 cu。对于OBS,每200m英寸英寸和380立方英寸。 192通道,1.2公里长的水听器拖缆每37.5m英寸。在时间迁移的反射区,沉积层和基底反射的变化可以在四国之外识别出来,这可能与磁线学提出的板块年龄的边界相对应[Okino et al。,1999]。在剖面的西南部,基底反射并不总是清晰的,并且显示出光滑的结构。在东北地区,地下室的深度随着反射信号的变化而急剧变化。在广角OBS数据中,沿地震剖面清晰地观察到PS转换波。特别是,从最上层地幔折射而来的PS转换波可以在剖面的东北半部被明显地识别出来。我们将使用OBS数据显示入港板块的洋壳结构变化,这可能与四国盆地的形成以及包括低频事件在内的各种地震活动的产生有关。该研究是日本MEXT资助的“减轻南海海槽地区大地震和海啸的复合灾害的研究项目”的一部分。

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