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首页> 外文期刊>Geo-marine letters >The potential influence of shallow gas and gas hydrates on sea floor erosion of Rock Garden, an uplifted ridge offshore of New Zealand
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The potential influence of shallow gas and gas hydrates on sea floor erosion of Rock Garden, an uplifted ridge offshore of New Zealand

机译:浅层天然气和天然气水合物对新西兰近海隆起的岩石花园海底侵蚀的潜在影响

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摘要

Regional erosion of the Rock Garden ridge top, a bathymetric high within New Zealand's Hikurangi Subduction Margin, is likely associated with its gas hydrate system. Seismic data reveal gas pockets that appear partially trapped beneath the shallow base of gas hydrate stability. Steady-state fluid flow simulations, conducted on detailed two-dimensional geological models, reveal that anomalous fluid pressure can develop close to the sea floor in response to lower-permeability hydrate-bearing sediments and underlying gas pockets. Transient simulations indicate that large-scale cycling of fluid overpressure may occur on time scales of a few to tens of years. We predict intense regions of hydro-fracturing to preferentially develop beneath the ridge top rather than beneath the flanks, due to more pronounced overpressure generation and gas migration through hydrate-bearing sediments. Results suggest that sediment weakening and erosion of the ridge top by hydro-fracturing could be owed to fluid dynamics of the shallow gas hydrate system.
机译:新西兰希库朗伊俯冲带内的测深高处的岩石花园山脊顶区域侵蚀可能与其天然气水合物系统有关。地震数据显示,气藏似乎部分被困在天然气水合物稳定的浅层底部之下。在详细的二维地质模型上进行的稳态流体流动模拟显示,异常流体压力可以响应于较低渗透率的含水合物沉积物和下伏气藏而在海床附近形成。瞬态模拟表明,流体超压的大规模循环可能发生在数年至数十年的时间尺度上。我们预测,由于更明显的超压产生和气体通过含水合物沉积物的迁移,强烈的水力压裂区域将优先在山脊顶部而不是在侧翼下方发展。结果表明,由于水力压裂作用,浅水合物系统的流体动力学可能导致水力压裂作用使沉积物变薄和侵蚀。

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