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Crustal Structure Revealed by a Deep Seismic Sounding Profile of Baijing-Gaoming-Jinwan in the Pearl River Delta

机译:珠江三角洲百井-高明-金湾深部地震测深资料揭示的地壳结构

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摘要

The Pearl River Estuary area,located in the middle part of the southern China coastal seismic belt,has long been considered a potential source of strong earthquakes above magnitude 7.0.To scientifically assess the potential strong earthquake risk in this area,a three-dimensional artificial seismic sounding experiment,consisting of a receiving array and seabed seismograph,was performed to reveal the deep crustal structure in this region.We used artificial ship-borne air-gun excitation shots as sources,and fixed and mobile stations as receivers to record seismic data from May to August 2015.This paper presents results along a line from the western side of the Pearl River Estuary to the western side of the Baijing-Gaoming-Jinwan profile.A two-dimensional velocity structure was constructed using seismic travel-time tomography.The inversion results show that the Moho depth is 27 km in the coastal area and 30 km in the northwest of the Pearl River Estuary area,indicating that the crust thins from land to sea.Two structural discontinuities and multiple low-velocity anomalies appear in the crustal section.Inside both discontinuity zones,a low-velocity layer,with a minimum velocity of 6.05kms 1,exists at a depth of about 15km,and another,with a minimum velocity of6.37kms 1,exists at a depth of about 21.5 km between the middle and lower crust.These low velocities suggest that the discontinuities may consist of partly molten material.Earthquakes with magnitudes higher than 5.0 occurred in the low-velocity layer along the profile.The deep Kaiping-Enping fault,rooted in the crust,may be one of the most important channels for deep material upwelling and is related to tectonic movement since the Cretaceous in the Pearl River Delta tectonic rift basin.
机译:珠江河口地区位于中国南方沿海地震腰带的中部,长期以来一直被认为是一个强大的地震源极超过7.0.科学上评估了这一领域的潜在强烈地震风险,三维人工由接收阵列和海底地震仪组成的地震探测实验是为了揭示该地区的深层地壳结构。我们使用人工船舶的气枪激励射击作为来源,以及固定和移动站作为录制地震数据的接收器从5月到2015年8月。这篇论文沿着珠江口西侧沿着珠江口西侧的一系列结果,以白景 - 高明 - 金湾轮廓的西侧。使用地震旅行时断层扫描构建了二维速度结构。倒置结果表明,沿海地区的Moho深度是27公里,位于珠江河口西北部30公里,表明地壳叮叮当当从陆地到海上。有关的结构不连续性和多个低速异常出现在地壳部分中。在一个不连续区域,低速层,最小速度为6.05kms 1的速度,存在于约15km的深度,另一层,在中间和下部壳体之间的最小速度为6.37kms 1,在中下地壳之间的深度约为21.5 km。低速表明,不连续性可能由部分熔化的材料组成。低于5.0的大于5.0的时刻发生了高度的。沿着剖面的速度层。植根于地壳中的深层展望故障,可能是深层材料上升最重要的通道之一,与珠江三角洲构造裂缝盆地白垩纪中白垩纪以来的构造运动有关。

著录项

  • 来源
    《中国海洋大学学报(英文版)》 |2018年第1期|186-194|共9页
  • 作者单位

    CAS Key Laboratory of Ocean Geology, South China Sea Institute of Oceanology, Chinese Academy of Sciences,Guangzhou 510301, China;

    University of Chinese Academy of Sciences, Beijing 100049, China;

    Guangdong Earthquake Agency, China Earthquake Administration, Guangzhou 510070, China;

    Guangdong Earthquake Agency, China Earthquake Administration, Guangzhou 510070, China;

    Guangdong Earthquake Agency, China Earthquake Administration, Guangzhou 510070, China;

    CAS Key Laboratory of Ocean Geology, South China Sea Institute of Oceanology, Chinese Academy of Sciences,Guangzhou 510301, China;

    Guangdong Earthquake Agency, China Earthquake Administration, Guangzhou 510070, China;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-19 03:49:05
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