首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Dynamic Accretion Beneath a Slow-Spreading Ridge Segment: IODP Hole 1473A and the Atlantis Bank Oceanic Core Complex
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Dynamic Accretion Beneath a Slow-Spreading Ridge Segment: IODP Hole 1473A and the Atlantis Bank Oceanic Core Complex

机译:慢速扩散脊段下方的动态增压:IODP孔1473A和亚特兰蒂斯银行海洋核心复合体

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摘要

809 deep IODP Hole U1473A at Atlantis Bank, SWIR, is 2.2 km from 1,508-mHole 735B and 1.4 from 158-m Hole 1105A. With mapping, it provides the first 3-D view of the upper levels of a 660-km2 lower crustal batholith. It is laterally and vertically zoned, representing a complex interplay of cyclic intrusion, and ongoing deformation, with kilometer-scale upward and lateral migration of interstial melt. Transform wall dives over the gabbro-peridotite contact found only evolved gabbro intruded directly into the mantle near the transform. There was no high-level melt lens, rather the gabbros crystallized at depth, and then emplaced into the zone of diking by diapiric rise of a crystal mush followed by crystal-plastic deformation and faulting. The residues to mass balance the crust to a parent melt composition lie at depth below the center of the massif-likely near the crust-mantle boundary. Thus, basalts erupted to the seafloor from >1,550 mbsf. By contrast, the Mid-Atlantic Ridge lower crust drilled at 23°N and at Atlantis Massif experienced little high-temperature deformation and limited late-stage melt transport. They contain primitive cumulates and represent direct intrusion, storage, and crystallization of parental MORB in thinner crust below the dike-gabbro transition. The strong asymmetric spreading of the SWIR to the south was due to fault capture, with the northern rift valley wall faults cutoff by a detachment fault that extended across most of the zone of intrusion. This caused rapid migration of the plate boundary to the north, while the large majority of the lower crust to spread south unroofing Atlantis Bank and uplifting it into the rift mountains.
机译:809年亚特兰蒂斯银行苏尔州银行的深层IODP孔U1473A离1,508-MHOLE 735B和1.4来自158米1105A 2.2公里。通过映射,它提供了660-KM2下层地壳浴池的上层的第一三维视图。它横向和垂直划出,代表循环侵入和持续变形的复杂相互作用,具有公正级和横向迁移的间隙熔体。转换墙潜水在Gabbro-PeridoTite接触上发现,发现只进化了Gabbro直接侵入了变换附近的地幔。没有高级熔体镜头,而是在深度结晶的Gabbros,然后通过晶体糊状物的浸润升高进入散热区域,然后进行晶体塑性变形和断层。质量平衡的残余物与母体熔化组合物的壳体位于底部底部靠近地壳边界附近的受损的中心下方。因此,来自> 1,550 MBSF的海底爆发了底座。相比之下,在23°N和Atlantis Massif在23°N和Atlantis Massif钻取的中大西洋脊下的地壳经历了很少的高温变形和有限的后期熔化运输。它们含有原始累积,并且代表父母Morb的直接入侵,储存和结晶在堤防 - 加布转换下方的较薄地壳中。强迫河到南方的强大不对称扩散是由于故障捕获,北裂谷墙壁断层通过拆卸故障截止,延伸到大部分侵入区域。这导致了板材边界的快速迁移到北方,而大多数下部地壳将遍布南方无亚特兰蒂斯银行蔓延,并将其升级到裂谷中。

著录项

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  • 作者单位

    Department of Geology and Geophysics Woods Hole Oceanographic Institution Woods Hole MA USA;

    Department of Earth Science Cardiff University Cardiff UK;

    International Ocean Discovery Program Texas A&

    M University College Station TX USA;

    Ocean Drilling Science Japan Agency for Marine-Earth Science and Technology Yokosuka Japan;

    Scripps Institution of Oceanography University of California San Diego La Jolla CA USA;

    Department of Geoscience University of Wisconsin-Milwaukee Milwaukee WI USA;

    Department of Geology and Geophysics University of Wyoming Laramie WY USA;

    Department of Environmental Exploration Engineering Pukyong National University Busan South Korea;

    Space Research Centre Polish Academy of Sciences Warsaw Poland;

    School of Biological Environmental and Earth Science University of Southern Mississippi Hattiesburg MS USA;

    Department of Geology and Geophysics Woods Hole Oceanographic Institution Woods Hole MA USA;

    Geosciences Montpellier CNRS University of Montpellier Montpellier France;

    Centre de Recherches Pétrographiques et Géochimiques CNRS Université de Lorraine Nancy France;

    Department of Geology University of Calcutta Kolkata India;

    Geosciences Montpellier CNRS University of Montpellier Montpellier France;

    Department of Geology and Geophysics University of Wyoming Laramie WY USA;

    Research School of Earth Science The Australian National University Acton ACT Australia;

    Institut fuer Mineralogie University of Hannover Hannover Germany;

    School of Earth and Space Exploration Arizona State University Tempe AZ USA;

    Institute of Geology and Geophysics Chinese Academy of Science Beijing China;

    School of Ocean and Earth Science Tongji University Shanghai China;

    College of Science and Engineering Kanazawa University Kanazawa Japan;

    School of Geography Earth and Environmental Science University of Plymouth Plymouth UK;

    Rosenstiel School of Marine and Atmospheric Science University of Miami Miami FL USA;

    Department of Earth Science Okayama University Okayama Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
  • 关键词

    Dynamic; Accretion; Beneath;

    机译:动态;accretion;下面;

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