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首页> 外文期刊>Tectonics >Reconstruction of Subduction and Back-Arc Spreading in the NW Pacific and Aleutian Basin: Clues to Causes of Cretaceous and Eocene Plate Reorganizations
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Reconstruction of Subduction and Back-Arc Spreading in the NW Pacific and Aleutian Basin: Clues to Causes of Cretaceous and Eocene Plate Reorganizations

机译:NW太平洋地区郊区和后弧散布的重建:CRETACE和eocene板重组导致的线索

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摘要

The Eocene (similar to 50-45Ma) major absolute plate motion change of the Pacific plate forming the Hawaii-Emperor bend is thought to result from inception of Pacific plate subduction along one of its modern western trenches. Subduction is suggested to have started either spontaneously, or result from subduction of the Izanagi-Pacific mid-ocean ridge, or from subduction polarity reversal after collision of the Olyutorsky arc that was built on the Pacific plate with NE Asia. Here we provide a detailed plate-kinematic reconstruction of back-arc basins and accreted terranes in the northwest Pacific region, from Japan to the Bering Sea, since the Late Cretaceous. We present a new tectonic reconstruction of the intraoceanic Olyutorsky and Kronotsky arcs, which formed above two adjacent, oppositely dipping subduction zones at similar to 85Ma within the north Pacific region, during another Pacific-wide plate reorganization. We use our reconstruction to explain the formation of the submarine Shirshov and Bowers Ridges and show that if marine magnetic anomalies reported from the Aleutian Basin represent magnetic polarity reversals, its crust most likely formed in an similar to 85- to 60-Ma back-arc basin behind the Olyutorsky arc. The Olyutorsky arc was then separated from the Pacific plate by a spreading ridge, so that the similar to 55- to 50-Ma subduction polarity reversal that followed upon Olyutorsky-NE Asia collision initiated subduction of a plate that was not the Pacific. Hence, this polarity reversal may not be a straightforward driver of the Eocene Pacific plate motion change, whose causes remain enigmatic.
机译:占领夏威夷弯曲的太平板的主要绝对板动作变化被认为是沿其现代西部战壕之一的太平板俯冲成立来引起。建议俯视自发地启动,或者由伊桑加太平洋中海山脊的俯冲,或者在奥杜沃尔斯基弧的碰撞之后俯冲,这些弧度在与Ne Asia的太平洋板上建造的奥尔杜沃尔斯基弧线碰撞。在这里,我们在西北太平洋地区的后弧盆地和煤层气的详细镀载性重建,从日本到白垩纪。我们在另一种太平洋宽的板重组期间,我们介绍了一个新的intoroceOrsky和克朗托斯基和克朗触发器的腹部奥拉杜氏蛋白酶和克朗滴电弧。我们使用我们的重建来解释潜艇的潜艇和鲍尔斯山脊的形成,并表明,如果从阿列丁盆地报道的海洋磁性异常代表磁极性逆转,其地壳最有可能形成在类似于85至60-mA后弧的情况下盆地后面的奥杜罗斯基弧。然后将Olyutorsky弧通过扩散脊与太平板分离,使得类似于55至50-mA的俯冲极性逆转,然后在Olyutorsky-ne亚洲碰撞中发起了不是太平洋的板块。因此,这种极性反转可能不是群岛太平板运动变化的直接驱动器,其原因保持神秘。

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  • 来源
    《Tectonics》 |2019年第4期|1367-1413|共47页
  • 作者单位

    Univ Utrecht Dept Earth Sci Utrecht Netherlands;

    Univ Utrecht Dept Earth Sci Utrecht Netherlands;

    Univ Utrecht Dept Earth Sci Utrecht Netherlands;

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  • 正文语种 eng
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