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首页> 外文期刊>Geo-Marine Letters >Morphologic and seismic features of the Gulf of Gökova, SW Anatolia: evidence of strike-slip faulting with compression in the Aegean extensional regime
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Morphologic and seismic features of the Gulf of Gökova, SW Anatolia: evidence of strike-slip faulting with compression in the Aegean extensional regime

机译:阿纳托利亚西南部Gökova湾的形态和地震特征:爱琴海伸展带受压的走滑断层证据

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摘要

Recently acquired (2005) multi-beam bathymetric and high-resolution seismic reflection data from the E–W-oriented Gulf of Gökova off SW Anatolia were evaluated in order to assess the uneven seafloor morphology and its evolution in terms of present-day active regional tectonics. Stratigraphically, the three identified seismic units, i.e., the basement, deltaic sediments deposited during Quaternary glacial periods, and modern gulf deposits, are consistent with those observed in previous studies. Structurally, the folds and faults with strike-slip and reverse components have been regionally mapped for the first time. Of these, NE–SW-oriented left-lateral strike-slip faults with compressional components forming the so-called Gökova Fault Zone intersect and displace two WNW–ESE-oriented submarine ridges and deep submarine plains. Thus, strike-slip faults are the youngest major structures in the gulf, and control present-day active tectonism. E–W-oriented folds on the inner and outer shelf, which are generally accompanied by reverse faults, delimit the margins of these submarine ridges, and deform the young basin deposits. These features also reveal the concomitant existence of a compressional tectonic regime. The compressional structures probably represent pressure ridges along left-lateral strike-slip fault segments. However, some E–W-oriented normal faults occur on the northwestern and partly also southern shelf, and along the borders of the adjacent deep submarine plains. They are intersected and displaced by the strike-slip faults. The lower seismicity along the normal faults relative to the NE–SW-oriented strike-slip faults suggests that the former are at present inactive or at least less active.
机译:为了评估不平坦的海底形态及其演变,根据最近活跃的区域,评估了最近从西南安那托利亚附近的戈科娃湾(E-W)的多波束测深和高分辨率地震反射数据(2005年)构造学。在地层学上,三个确定的地震单元,即基底,第四纪冰川期沉积的三角洲沉积物和现代海湾沉积,与以前的研究一致。在结构上,具有走滑和逆向分量的褶皱和断层是第一次在区域上绘制。其中,由NE-SW导向的左走向滑动断层与形成所谓的Gökova断层带的压缩分量相交并置换了两个WNW-ESE导向的海底脊和深部海底平原。因此,走滑断层是海湾中最年轻的主要构造,并控制了当今的活跃构造。内外架子上以E-W为导向的褶皱通常伴有逆断层,划定了这些海底山脊的边缘,并使年轻的盆地沉积物变形。这些特征还揭示了压缩构造构造的同时存在。压缩结构可能代表沿着左走向走滑断层段的压力脊。但是,一些西北方向的正断层发生在西北和部分南部的陆架上,并且沿着相邻的深海平原边界。它们被走滑断层相交并移位。相对于NE-SW走向的走滑断层,沿着正常断层的地震活动性较低,这表明前者目前处于非活动状态或至少处于非活动状态。

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  • 来源
    《Geo-Marine Letters》 |2013年第1期|31-48|共18页
  • 作者单位

    Department of Geophysics Engineering Faculty Istanbul University">(1);

    Istituto Nazionale di Oceanografia e di Geofisica Sperimentale-OGS">(3);

    Department of Geophysics Engineering Faculty Istanbul University">(1);

    Natural Science Research Center Yıldız Technical University">(2);

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