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Mount Elbert Gas Hydrate Stratigraphic Test Well, Alaska North Slope: Coring operations, core sedimentology, and lithostratigraphy

机译:阿拉斯加北坡埃尔伯特山天然气水合物地层测试井:取心作业,岩心沉积学和岩石地层学

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In February 2007, BP Exploration (Alaska), the U.S. Department of Energy, and the U.S. Geological Survey completed the BPXA-DOE-USGS Mount Elbert Gas Hydrate Stratigraphic Test Well (Mount Elbert well) in the Milne Point Unit on the Alaska North Slope. The program achieved its primary goals of validating the pre-drill estimates of gas hydrate occurrence and thickness based on 3-D seismic interpretations and wireline log correlations and collecting a comprehensive suite of logging, coring, and pressure testing data. The upper section of the Mount Elbert well was drilled through the base of ice-bearing permafrost to a casing point of 594 m (1950 ft), approximately 15 m (50 ft) above the top of the targeted reservoir interval. The lower portion of the well was continuously cored from 606 m (1987 ft) to 760 m (2494 ft) and drilled to a total depth of 914 m. Ice-bearing permafrost extends to a depth of roughly 536 m and the base of gas hydrate stability is interpreted to extend to a depth of 870 m. Coring through the targeted gas hydrate bearing reservoirs was completed using a wireline-retrievable system. The coring program achieved 85% recovery of 7.6 cm (3 in) diameter core through 154 m (504 ft) of the hole. An onsite team processed the cores, collecting and preserving approximately 250 sub-samples for analyses of pore water geochemistry, microbiology, gas chemistry, petrophysical analysis, and thermal and physical properties. Eleven samples were immediately transferred to either methane-charged pressure vessels or liquid nitrogen for future study of the preserved gas hydrate. Additional offsite sampling, analyses, and detailed description of the cores were also conducted. Based on this work, one lithostratigraphic unit with eight subunits was identified across the cored interval. Subunits II and Va comprise the majority of the reservoir facies and are dominantly very fine to fine, moderately sorted, quartz, feldspar, and lithic fragment-bearing to -rich sands. Lithostratigraphic and palynologic data indicate that this section is most likely early Eocene to late Paleocene in age. The examined units contain evidence for both marine and non-marine lithofacies, and indications that the depositional environment for the reservoir facies may have been shallower marine than originally interpreted based on pre-drill wireline log interpretations. There is also evidence of reduced salinity marine conditions during deposition that may be related to the paleo-climate and depositional conditions during the early Eocene.
机译:2007年2月,BP勘探公司(阿拉斯加),美国能源部和美国地质调查局在阿拉斯加北坡Milne Point单元完成了BPXA-DOE-USGS埃尔伯特山天然气水合物地层测试井(埃尔伯特井)。 。该程序实现了其主要目标,即基于3-D地震解释和电缆测井相关性,验证了天然气水合物的钻前估算和厚度,并收集了一整套测井,取芯和压力测试数据。通过含冰的多年冻土层底部钻探Elbert井的上部,钻探到594 m(1950 ft)的套管点,比目标储层间隔顶部高出约15 m(50 ft)。井的下部从606 m(1987 ft)连续取芯到760 m(2494 ft),并钻至总深度914 m。含冰的永久冻土延伸到大约536 m的深度,而天然气水合物稳定性的基础被解释为延伸到870 m的深度。使用有线可检索系统完成了对目标含天然气水合物的储层的取心。取芯程序通过154 m(504 ft)的孔实现了7.6 cm(3 in)直径岩心的85%的采收率。一个现场小组处理了岩心,收集并保存了大约250个子样本,用于分析孔隙水的地球化学,微生物学,气体化学,岩石物理分析以及热和物理性质。立即将11个样品转移到装有甲烷的压力容器或液氮中,以供将来研究所保存的天然气水合物。还进行了其他的场外采样,分析以及对岩心的详细描述。在这项工作的基础上,在整个岩心间隔中确定了一个岩石地层单元和八个亚单元。亚单位II和Va构成了大部分储层相,主要为极细到细,适度分选的石英,长石和含碎屑岩的富砂岩。岩性地层学和古生物学资料表明,这一年龄段很可能是始新世早期到古新世晚期。所检查的单元包含海洋和非海洋岩相的证据,并表明储层相的沉积环境可能比最初根据钻前测井测井解释所解释的海洋浅。也有证据表明沉积过程中盐度海洋条件降低,这可能与始新世早期的古气候和沉积条件有关。

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