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首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >2D spatial distribution of reflection intensity on the upper surface of the Philippine Sea plate off the Boso Peninsula, Japan
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2D spatial distribution of reflection intensity on the upper surface of the Philippine Sea plate off the Boso Peninsula, Japan

机译:2D菲律宾海底上表面反射强度的空间分布,日本波索半岛

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摘要

The region off the Boso Peninsula, Japan, is a tectonically complex area where the Pacific plate is subducting beneath both the landward plate and the Philippine Sea plate (PHS) from the Japan trench and the Izu-Bonin trench as the PHS is subducting under the landward plate from the Sagami trough. It is important to better determine the structure of this region to deepen our understanding of its seismicity. Previous seismic reflection studies have shown that reflections from the upper surface of the PHS vary with depth, being stronger in the main slip area of the slow slip events beneath the Boso Peninsula (Boso SSEs). However, the spatial relationship between the reflective area and the SSEs is poorly constrained. This study mapped the distribution of the reflective area using data recorded by ocean bottom seismometers during an active-source seismic experiment. We constructed a 3D P-wave velocity structure by using traveltimes of first arrivals from 18 ocean bottom seismometer records. We also adapted the traveltime mapping method to reflection traveltimes, projecting them to the depth distance domain, to map the 2D distribution of strong reflections from the top of the PHS. These reflections were concentrated in two areas, one near the main slip area of the Boso SSEs and the other about 60 km to the east. In the first area, the absence of strong velocity contrasts near the top of the PHS suggests that the reflections were generated by a thin low-velocity layer. In contrast, the structure of the second area has a convex shape of high velocity with a high velocity gradient near the top of the PHS. This structure may represent boninitic material of the outer-arc high, partially serpentinized peridotite, or gabbro displaced by intraoceanic reverse faults.
机译:日本波索半岛的地区是一个根本复杂的地区,太平洋板块在陆地板和菲律宾海底(PHS)下方从日本沟槽和伊豆 - 波宁沟槽下面,因为PHS底部来自Sagami Trough的陆地板块。重要的是要更好地确定该地区的结构,以加深我们对其地震性的理解。以前的地震反射研究表明,来自PHS的上表面的反射随深度而变化,在Boso半岛(Boso SSES)下方的慢速滑动事件的主滑槽中更强。然而,反射区域和SSE之间的空间关系受到严重限制。本研究在主动源地震实验期间使用海底地震仪记录的数据映射了反射区域的分布。我们通过使用来自18个海底地震计记录的首次抵达的旅行时间构建了3D P波速度结构。我们还将旅行时间映射方法调整为反射行进时间,将它们突出到深度距离域,以从PHS的顶部映射强烈反射的2D分布。这些反思集中在两个地区,一个靠近波斯索斯的主要滑块,另一个约60公里到东部。在第一个区域中,没有强的速度对比,靠近pH的顶部呈现,表明反射由薄的低速层产生。相反,第二区域的结构具有高速的凸形,具有在pH的顶部附近的高速梯度。该结构可以代表外弧高,部分蛇形的恒星的BONINITITE材料,或通过血管内逆断层移位的GBBBRO。

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