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首页> 外文期刊>Marine and Petroleum Geology >Gas geochemistry of the Mount Elbert Gas Hydrate Stratigraphic Test Well, Alaska North Slope: Implications for gas hydrate exploration in the Arctic
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Gas geochemistry of the Mount Elbert Gas Hydrate Stratigraphic Test Well, Alaska North Slope: Implications for gas hydrate exploration in the Arctic

机译:阿拉斯加北坡埃尔伯特山天然气水合物地层测试井的天然气地球化学:对北极天然气水合物勘探的启示

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Gases were analyzed from well cuttings, core, gas hydrate, and formation tests at the BPXA-DOE-USGS Mount Elbert Gas Hydrate Stratigraphic Test Well, drilled within the Milne Point Unit, Alaska North Slope. The well penetrated a portion of the Eileen gas hydrate deposit, which overlies the more deeply buried Prudhoe Bay, Milne Point, West Sak, and Kuparuk River oil fields. Gas sources in the upper 200 m are predominantly from microbial sources (Cl isotopic compositions ranging from -86.4 to -80.6‰). The C1 isotopic composition becomes progressively enriched from 200 m to the top of the gas hydrate-bearing sands at 600 m. The tested gas hydrates occur in two primary intervals, units D and C, between 614.0 m and 664.7 m, containing a total of 29.3 m of gas hydrate-bearing sands. The hydrocarbon gases in cuttings and core samples from 604 to 914 m are composed of methane with very little ethane. The isotopic composition of the methane carbon ranges from -50.1 to -43.9‰ with several outliers, generally decreasing with depth. Gas samples collected by the Modular Formation Dynamics Testing (MDT) tool in the hydrate-bearing units were similarly composed mainly of methane, with up to 284 ppm ethane. The methane isotopic composition ranged from -48.2 to -48.0‰ in the C sand and from -48.4 to -46.6‰ in the D sand. Methane hydrogen isotopic composition ranged from -238 to -230‰, with slightly more depleted values in the deeper C sand. These results are consistent with the concept that the Eileen gas hydrates contain a mixture of deep-sourced, microbially biodegraded thermogenic gas, with lesser amounts of thermogenic oil-associated gas, and coal gas. Thermal gases are likely sourced from existing oil and gas accumulations that have migrated up-dip and/or up-fault and formed gas hydrate in response to climate cooling with permafrost formation.
机译:在BPXA-DOE-USGS埃尔伯特天然气水合物地层测试井BPXA-DOE-USGS的钻屑,岩心,天然气水合物和地层测试中对气体进行了分析,该井在阿拉斯加北坡Milne Point单元内钻探。该井渗透了一部分艾琳天然气水合物沉积物,该沉积物覆盖了更深埋的普拉德霍湾,米尔恩角,西萨克和库帕鲁克河油田。上游200 m的气源主要来自微生物(Cl同位素组成范围为-86.4至-80.6‰)。 C1同位素组成从200 m逐渐富集到含天然气水合物的砂顶部600 m。所测试的天然气水合物以两个主要的间隔(D和C单元)出现,在614.0 m至664.7 m之间,总共含有29.3 m的天然气水合物含砂。 604至914 m的岩屑和岩心样品中的碳氢化合物气体由甲烷和少量乙烷组成。甲烷碳的同位素组成范围为-50.1至-43.9‰,且有多个异常值,通常随深度而减小。在含水合物的单元中,通过模块化地层动力学测试(MDT)工具收集的气体样品类似地主要由甲烷和不超过284 ppm的乙烷组成。碳同位素含量在C砂中为-48.2〜-48.0‰,在D砂中为-48.4〜-46.6‰。甲烷氢同位素组成的范围为-238至-230‰,在更深的C砂层中的贫化值略高。这些结果与Eileen天然气水合物包含深来源的,微生物生物降解的热气,少量热气伴生气和煤气的混合物这一概念是一致的。热气可能来自现有的油气聚集体,这些油气聚集体响应上层永久冻土的气候降温而向上下倾和/或向上断层迁移并形成了天然气水合物。

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