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首页> 外文期刊>AAPG Bulletin >Origin and timing of sand injection, petroleum migration, and diagenesis in Tertiary reservoirs, south Viking Graben, North Sea
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Origin and timing of sand injection, petroleum migration, and diagenesis in Tertiary reservoirs, south Viking Graben, North Sea

机译:北海维京格拉本南部第三系储层注砂,石油运移和成岩作用的成因和时机

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摘要

Petrographic, fluid-inclusion, and carbon and oxygen stable isotope studies of Tertiary injectite reservoirs in the south Viking Graben of the North Sea allow an understanding of the origin and timing of sand injection, petroleum migration, and diagenesis. Injection from shallowly (<400 m; <1300 ft) buried Paleocene and Eocene unconsolidated sandstones occurred at the end of the Eocene, probably in response to earthquake activity. Liquid oil was already present in the parent sands prior to injection and leaked from the injectites to the seabed. Upward-migrating oil and basinal brines mixed with downward-invading mixed meteoric-marine pore fluids in the injectites, causing extensive biodegradation of the oil. Biodegradation of oil provided the driver for early carbonate cementation in injectites, causing diminished reservoir quality. However, early carbonate cementation also sealed off the injectites as potential escape routes for petroleum from the underlying parent sands. Oil (and gas) continued to migrate into the reservoir (parent) sands upon increased burial, causing a mixing of high-API oil with the early charged, extensively biodegraded low-API oil. The study of early diagenetic imprints reveals the evolution of injectite reservoirs, which forms the basis for understanding how to explore and develop them.
机译:南部海域第三纪注入岩储层的岩石学,流体包裹体以及碳和氧稳定同位素研究使人们对有了认识。 sup>喷砂的起源和时机,石油运移和 成岩作用。浅埋(<400 m; <1300 ft) 埋藏的古新世和始新世未固结砂岩在始新世末期发生了 ,可能是由于地震 活动。注入之前,母体砂中已经存在液态油 ,并且从注入物泄漏到海床。 向上迁移的油和盆地盐水与向下侵入的混合混合的陨石海洋孔隙流体在注入物中,导致油的 广泛的生物降解。石油的生物降解提供了注入岩中早期碳酸盐胶结的驱动力,从而降低了储层质量。但是,早期的碳酸盐胶结作用 也封闭了注入岩层,作为潜在的 石油从潜在母体砂中逸出的途径。随着 埋葬次数的增加,石油(和天然气)继续 迁移到储层(母体)砂中,导致高API油与早期装料的混合, < / sup>广泛生物降解的低API油。对早期成岩 印记的研究揭示了注入岩储集层的演化,这为了解如何勘探和开发 它们奠定了基础。

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  • 来源
    《AAPG Bulletin》 |2005年第3期|00000329-00000357|共29页
  • 作者单位

    Department of Geology and Petroleum Geology, University of Aberdeen, AB24 3UE, Aberdeen, United Kingdompresent address: ExxonMobil Exploration Company, 222 Benmar Drive GP8-448 Houston, Texas 77060rene.jonk@exxonmobil.com;

    Department of Geology and Petroleum Geology, University of Aberdeen, AB24 3UE, Aberdeen, United Kingdoma.hurst@abdn.ac.uk;

    Badley Ashton America, Houston, Texasdavideduranti@baai-houston.com;

    Department of Geology and Petroleum Geology, University of Aberdeen, AB24 3UE, Aberdeen, United Kingdomj.parnell@abdn.ac.uk;

    Department of Geology and Petroleum Geology, University of Aberdeen, AB24 3UE, Aberdeen, United Kingdoma.mazzini@abdn.ac.uk;

    Scottish Universities Environmental Research Center, G75 0QF, East Kilbride, United KingdomT.Fallick@surrc.gla.ac.uk;

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