Integration of latest oil-base mud borehole images with lower resolution tools, Thunder Horse North field, GOM

C. Vahle, B. Ruehlicke, Z. Veselovský, B. Hansen
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Abstract

Summary Recent borehole imaging technology significantly improved the resolution within oil-base mud environments. The integration of such high-resolution borehole images (BHI) with data from vintage tools as well as core and seismic allows for an advanced interpretation of structural dip and depositional environment, being valuable particularly in challenging areas such as the Mississippi Canyon, Gulf of Mexico. The latest BHI data is used to verify previous hypotheses for the interpretation of the structural dip within the Thunder Horse field. The Thunder Horse reservoir interval is characterized by mass transport deposits, where the majority of mud-prone beds represent slump units and slide blocks of variable orientation. Therefore these mudstones cannot be used as paleo-horizontal indicator. Conversely, intercalated turbiditic sands with parallel layering are sought as reference for paleo-horizontal. As a consequence, the halokinetic tilting near the Thunder Horse North salt wall is analyzed from stereographic projections of these sand units instead. After restoring the pre-halokinetic bedding dip a S to SSE directed sediment transport is interpreted for these Middle Miocene reservoirs, hence excluding a salt barrier or deflection of the turbiditic currents.
最新油基泥浆井眼图像与低分辨率工具的集成,Thunder Horse North油田,墨西哥湾
最近的井眼成像技术显著提高了油基泥浆环境的分辨率。将高分辨率井眼图像(BHI)与老式工具、岩心和地震数据相结合,可以对构造倾角和沉积环境进行先进的解释,特别是在密西西比峡谷、墨西哥湾等具有挑战性的地区,这是很有价值的。最新的BHI数据用于验证先前关于雷马油田构造倾角解释的假设。雷马储层段以块体搬运沉积为特征,大部分易泥层为滑塌单元和变向滑块。因此,这些泥岩不能作为古水平指示。相反,寻找平行层状的浊积砂岩作为古水平的参考。因此,根据这些砂单元的立体投影来分析雷马北盐壁附近的盐动倾斜。在恢复了盐动前的层理倾角后,解释了这些中中新世储层的S - SSE定向沉积物输运,从而排除了盐屏障或浊积流的偏转。
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