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Gas hydrate stability zone modelling in areas of salt tectonics and pockmarks of the Barents Sea suggests an active hydrocarbon venting system

机译:盐构造和巴伦支海麻点区域的天然气水合物稳定带模拟表明,存在活跃的油气排放系统

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The Barents Sea seabed exhibits an area of major glacial erosion exposing parts of the old hydrocarbon basins. In this region, we modelled the gas hydrate stability field in a 3D perspective, including the effects of higher order hydrocarbon gases. We used 3D seismic data to analyse the linkage between fluid-flow expressions and hydrate occurrences above old sedimentary basin systems and vertical faults. Pockmarks showed a relation to fault systems where some of them are directly connected to hydrocarbon bearing sedimentary formations. The influence of bottom water temperature, pore water salinity and geothermal gradient variation on gas hydrate stability zone (GHSZ) thickness is critically analysed in relation to both geological formations and salt tectonics. Our analysis suggests a highly variable GHSZ in the Barents Sea region controlled by local variations in the parameters of stability conditions. Recovery of gas-hydrate sample from the region and presence of gas-enhanced reflections below estimated BSR depths may indicate a prevalent gas-hydrate stable condition.
机译:巴伦支海海床的主要冰川侵蚀区域暴露了部分旧油气盆地。在该区域,我们以3D透视图对天然气水合物稳定性场进行了建模,包括高阶烃类气体的影响。我们使用3D地震数据分析了旧沉积盆地系统和垂直断层上方的水流表达式与水合物发生之间的联系。麻点显示出与断层系统的关系,其中一些断层系统直接与含烃沉积层相连。结合地质构造和盐构造,严格分析了底水温度,孔隙水盐度和地热梯度变化对天然气水合物稳定带厚度的影响。我们的分析表明,受稳定条件参数的局部变化控制,巴伦支海地区的GHSZ高度可变。从该区域回收天然气水合物样品,并且在估计的BSR深度以下存在气体增强反射,可能表明天然气水合物稳定存在。

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