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Seismic evidence for shallow gas-escape features associated with a retreating gas hydrate zone offshore west Svalbard

机译:与西部斯瓦尔巴群岛近海的退缩天然气水合物带相关的浅层气体逃逸特征的地震证据

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摘要

Active gas venting occurs on the uppermost continental slope off west Svalbard, close to and upslope from the present-day intersection of the base of methane hydrate stability (BMHS) with the seabed in about 400 m water depth in the inter-fan region between the Kongsfjorden and Isfjorden cross-shelf troughs. From an integrated analysis of high-resolution, two-dimensional, pre-stack migrated seismic reflection profiles and multibeam bathymetric data, we map out a bottom simulating reflector (BSR) in the inter-fan region and analyze the subsurface gas migration and accumulation. Gas seeps mostly occur in the zone from which the BMHS at the seabed has retreated over the recent past (1975–2008) as a consequence of a bottom water temperature rise of 1°C. The overall margin-parallel alignment of the gas seeps is not related to fault-controlled gas migration, as seismic evidence of faults is absent. There is no evidence for a BSR close to the gas flare region in the upper slope but numerous gas pockets exist directly below the predicted BMHS. While the contour following trend of the gas seeps could be a consequence of retreat of the landward limit of the BMHS and gas hydrate dissociation, the scattered distribution of seeps within the probable hydrate dissociation corridor and the occurrence of a cluster of seeps outside the predicted BMHS limit and near the shelf break indicate the role of lithological heterogeneity in focusing gas migration.
机译:活跃的气体排放发生在斯瓦尔巴特河以西的最上层大陆斜坡上,在甲烷水合物稳定性(BMHS)基础与海床之间的扇形区域之间约400 m的水深中,从今天的交点开始接近并向上倾斜。 Kongsfjorden和Isfjorden交叉货架槽。通过对高分辨率,二维,叠前偏移地震反射剖面和多波束测深数据的综合分析,我们绘制了扇间区域的底部模拟反射器(BSR),并分析了地下天然气的迁移和聚集。在最近的过去(1975-2008年),由于底水温度升高了1°C,海底的BMHS逐渐退缩的区域大多发生了气体渗漏。由于没有断层的地震证据,气渗的整体边界平行排列与断层控制的气运无关。没有证据表明BSR靠近上斜坡的瓦斯火炬区域,但是在预测的BMHS的正下方存在大量气穴。尽管气体渗漏的轮廓追随趋势可能是BMHS向陆地极限的退缩和天然气水合物离解的结果,但渗漏在可能的水合物离解通道内的分散分布以及在预测的BMHS之外出现了一系列渗漏极限和架子破裂附近表明岩性非均质性在聚焦气体运移中的作用。

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