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Gas migration through Opouawe Bank at the Hikurangi margin offshore New Zealand

机译:天然气通过新西兰近海Hikurangi边缘的Opouawe银行迁移

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摘要

This study presents 2D seismic reflection data, seismic velocity analysis, as well as geochemical and isotopic porewater compositions from Opouawe Bank on New Zealand's Hikurangi subduction margin, providing evidence for essentially pure methane gas seepage. The combination of geochemical information and seismic reflection images is an effective way to investigate the nature of gas migration beneath the seafloor, and to distinguish between water advection and gas ascent. The maximum source depth of the methane that migrates to the seep sites on Opouawe Bank is 1,500-2,100 m below seafloor, generated by low-temperature degradation of organic matter via microbial CO2 reduction. Seismic velocity analysis enabled identifying a zone of gas accumulation underneath the base of gas hydrate stability (BGHS) below the bank. Besides structurally controlled gas migration along conduits, gas migration also takes place along dipping strata across the BGHS. Gas migration on Opouawe Bank is influenced by anticlinal focusing and by several focusing levels within the gas hydrate stability zone.
机译:这项研究提供了位于新西兰Hikurangi俯冲带的二维地震反射数据,地震速度分析以及来自Opouawe Bank的地球化学和同位素孔隙水成分,为基本上纯的甲烷气体渗透提供了证据。地球化学信息和地震反射图像的结合是研究海底气体迁移特征,区分水流平流和气体上升的有效方法。甲烷在甲烷中的最大来源深度是在Opouawe Bank的渗流点以下,其深度是海底以下1,500-2,100 m,这是由于微生物通过二氧化碳的还原而低温降解有机物而产生的。地震速度分析使得能够识别位于堤岸下方的天然气水合物稳定性(BGHS)下方的天然气成藏区。除了沿管道进行结构受控的气体运移外,气体运移还沿着整个BGHS的浸入地层发生。 Opouawe Bank的天然气运移受到斜向聚焦和天然气水合物稳定区内几个聚焦水平的影响。

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