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How tectonic folding influences gas hydrate formation: New Zealand's Hikurangi subduction margin

机译:构造折叠如何影响天然气水合物形成:新西兰的Hikurangi俯冲保证金

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摘要

It is important to understand how and where concentrated gas hydrates form because the gas hydrate system modulates methane flow through the seafloor and into the oceans. We investigated gas hydrate formation in relation to tectonic folding at New Zealand's southern Hikurangi subduction margin. Concentrated gas hydrates form preferentially in strata crossing the base of the hydrate stability zone at angles greater than similar to 5 degrees. Intriguingly, concentrated deposits are more common in landward-dipping strata than seaward-dipping strata. We explain this asymmetry with a conceptual model for hydrate formation in accretionary wedges. Preferential sedimentation on the landward sides of ridges leads to pronounced gas hydrate recycling in landward-dipping strata. Together with focused fluid flow beneath the hydrate system, gas hydrate recycling favors the development of interconnected gas columns that drive gas back into the hydrate stability zone to form concentrated gas hydrates. Our results advance the understanding of gas hydrate formation in accretionary wedges, which are common global tectonic settings for gas hydrate systems.
机译:重要的是要了解集中天然气水合物的形式,因为天然气水合物系统调节甲烷流过海底并进入海洋。我们研究了新西兰南部Hikurangi俯冲保证金的构造折叠的天然气水合物形成。优先于层的浓缩气体水合物,在较大的角度下穿过水合物稳定区的底部,大于与5度相似。在浸渍地层中,着迷的浓缩沉积物比浸渍层更常见。我们用概念模型解释了这种不对称模型,用于在增生楔形楔中的水合物形成。脊的陆地面上的优先沉降导致落地地层中的液体水合物再循环。水合物系统下方的聚焦流体流动,气体水合物回收利用互连气体柱的开发,该气体柱驱动气体回到水合物稳定区以形成浓缩气体水合物。我们的研究结果推进了对增生楔形气体水合物形成的理解,这是天然气水合物系统的共同全球构造环境。

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  • 来源
    《Geology》 |2019年第1期|共4页
  • 作者单位

    GNS Sci 1 Fairway Dr Lower Hutt 5011 New Zealand;

    GNS Sci 1 Fairway Dr Lower Hutt 5011 New Zealand;

    Univ Auckland Sch Environm 23 Symonds St Auckland 1010 New Zealand;

    Univ Otago Geol Dept 360 Leith St Dunedin 9016 New Zealand;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地质学;
  • 关键词

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