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Migration of methane gas through the hydrate stability zone in a low-flux hydrate province

机译:甲烷气体通过低通量水合物省的水合物稳定区迁移

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New high-resolution seismic data show clear evidence for upward injection of methane gas well into the hydrate stability zone at the stable, low-methane-flux Blake Ridge crest. This movement of gaseous methane, through a thermo-dynamic regime where it should be trapped as hydrate, suggests that dynamic migrations of gas play an important role in the interaction of subseafloor methane with the ocean. In the study area, none of the seismic amplitude anomalies that provide evidence for gas migration reaches the seafloor; instead they terminate at the base of a highly reflective, unfaulted capping layer. Seismic inversions of anomalous regions show (1) increased velocities beneath the hydrate stability zone, suggesting less gas, and (2) increased velocities within the hydrate stability zone associated with observed low-amplitude chimneys and bright spots, indicating increased hydrate concentrations. These observations and analyses indicate that methane migrates upward as free gas hundreds of meters into the hydrate stability zone before forming hydrate. The observations strongly imply that given appropriate permeable pathways, free gas can escape into the ocean. Even in a low-flux environment, the hydrate stability zone is not an impermeable barrier to free-gas migration. [References: 30]
机译:新的高分辨率地震数据显示了在稳定的低甲烷通量布雷克山脊波峰向上将甲烷气井注入水合物稳定区的明确证据。气态甲烷的这种运动,是通过热力学机制将其作为水合物捕获的,表明天然气的动态迁移在海底甲烷与海洋的相互作用中起着重要作用。在研究区域,没有一个能为天然气运移提供证据的地震幅度异常到达海底。取而代之的是,它们终止于高度反射,无缺陷的覆盖层的底部。异常区域的地震反演表明(1)在水合物稳定带下方的速度增加,表明天然气较少;(2)在水合物稳定带内的速度增加,与观察到的低振幅烟囱和亮点有关,表明水合物浓度增加。这些观察和分析表明,甲烷在形成水合物之前以数百米的自由气体向上迁移到水合物稳定区。这些观察结果强烈暗示,只要有适当的渗透路径,自由气体就可以逃逸到海洋中。即使在低通量环境中,水合物稳定区也不是自由气体迁移的不可渗透屏障。 [参考:30]

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