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Shallow gas accumulation in glacigenic sedimentary formation of the mid-Norwegian margin north of Storegga slide (Helland Hansen 3D cube)

机译:storegga滑坡以北中挪威边缘冰原沉积形成的浅层气藏(Helland Hansen 3D cube)

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摘要

My master thesis concentrates on the distribution of gas accumulation to infer vertical fluid migration in sedimentary formations of Eocene-Oligocene (Brygge Formation) and Pliocene-Pleistocene (Naust Formation) in the mid-Norwegian margin at the Helland Hansen Arch, north of the Storegga slide. The seismic interpretation is based on “Helland Hansen 3D cube SH9602”. The N-S oriented Helland Hansen Arch (HHA) has a hydrocarbon potential where both tectonic and thermal subsidence has played a role in forming hydrocarbon traps. The oozes and debris flow deposit seal off the vertical migrating fluids allowing them to accumulate along the HHA. At the crest of HHA seismic bright spots are delineated by using acoustic attributes. The area beneath the bright spots shows the depletion of higher frequencies due to absorption of seismic energy. Beneath the bright spot vertical fluid migration features appear as disturbed and distorted wipe-out seismic zone and velocity sags (push down). The vertical fluid migration features occur along major faults and are identified by the low coherency values on variance attribute maps. Gas accumulation zones are extensively disturbed by faulting along the eastern flanks of HHA where polygonal faults provide routes for vertical gas migration. The polygonal faults were reactivated by sediment loading from submarine slides. Pipe structures provide further pathways for vertical gas migration from reactivated polygonal faults. The presence of gas in the glacigenic sedimentary formation of Naust A and U unit is identified by the distinct reduction of P-wave velocities.
机译:我的硕士论文重点研究了在Storegga北部Helland Hansen Arch挪威中缘的始新世-渐新世(Brygge地层)和上新世-更新世(Naust地层)的沉积岩层中的天然气成藏分布。滑动。地震解释基于“ Helland Hansen 3D立方体SH9602”。 N-S取向的Helland Hansen拱(HHA)具有烃类潜力,其中构造和热沉降都在形成油气圈闭中发挥了作用。渗出物和碎屑流沉积物将垂直迁移的流体密封起来,使它们沿着HHA积累。在HHA的波峰处,通过使用声学属性来描绘地震亮点。亮点下面的区域由于吸收了地震能量而显示出较高的频率损耗。在亮点之下,垂直流体运移特征表现为扰动和扭曲的消灭地震带和速度垂降(下推)。垂直流体运移特征沿主要断层发生,并由方差属性图上的低相干性值确定。沿HHA东侧的断层对天然气的聚集区造成了很大的干扰,在该区的多边形断层为垂直的天然气运移提供了路径。多边形断层通过海底滑坡上的沉积物重新激活。管道结构为再活化的多边形断层的垂直气体运移提供了进一步的途径。通过P波速度的明显降低,可以确定Naust A和U单元的成冰沉积层中存在气体。

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    Ahmad Tanveer;

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  • 年度 2012
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  • 正文语种 eng
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