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Return to rifts - the next wave: fresh insights into the petroleum geology of global rift basins

机译:回到裂谷-下一波:全球裂谷盆地石油地质学的新见解

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摘要

Rift basin exploration has provided the oil and gas industry with almost one third of discovered global hydrocarbon resources. The maturity of prolific passive margin sequence plays has necessitated a shift in technical emphasis to understanding petroleum geology of the deeper precursor rift basin megasequences. Modelling of these petroleum systems relies extensively on theoretical stretching hypotheses for whole-crust evolution and heat flow prediction. Several alternatives have emerged to account for anomalous rift-related thermal stress, asymmetry of structural styles and origin of thick syn-rift ‘sag-basin’ subsidence patterns at passive continental margins. These observations cannot be predicted by the pure shear uniform stretching model first introduced by McKenzie in 1978. Newly acquired, 2D long cable deep seismic records provide empirical evidence that supports more complex, polyphase, depth-dependent stretching origins for rift-basin formation. Heterogeneities are believed to be inherent in the brittle upper crust, in the ductile lower crust and lithospheric mantle and so result in the complex distribution of accommodation space recorded by syn-rift megasequence deposition during episodes of orthogonal or oblique extension. No single stretching model uniquely describes the varied structural response of the anisotropic crust to plate-scale extension. A hybrid of phased simple and pure shear deformation mechanisms separated by regional lateral, and possibly vertical crustal discontinuities, may explain the apparent paradox of along-strike co-existence of uniform versus depth-dependent stretching structural geometries.
机译:裂谷盆地勘探已为石油和天然气工业 提供了近三分之一的全球已发现的烃资源。 多产被动余量层序的成熟性使得 将技术重点转移到理解更深的前兆裂谷盆地大序列的石油地质学上。这些石油系统的建模 广泛依赖于理论 假设,用于全壳演化和热流 预测。出现了几种替代方法来解释 与裂谷有关的热应力,结构 样式的不对称性以及厚的同裂谷'sag-basin' 被动大陆边缘的沉降模式。这些观测值 不能由McKenzie于1978年首次引入的纯剪切均匀拉伸模型 进行预测。新获得的二维长 电缆深地震记录提供了经验证据支持裂谷盆地形成中更复杂的,多相的,与深度有关的拉伸起点 。异质性被认为是 固有于脆性上地壳,延性下地壳 和岩石圈地幔中,因此导致适应性复杂分布 在垂直或倾斜延伸的情节期间,通过同立裂变大序列沉积 记录的空间。没有单一的sss拉伸模型唯一地描述各向异性地壳对板尺度扩展的变化的结构响应ss。相变简单纯剪切变形机制的混合 被区域侧向,可能垂直的地壳间断所分隔, 可以解释沿地壳的明显悖论。均匀与深度相关的拉伸结构几何形状的碰撞共存

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    《Petroleum Geoscience》 |2007年第2期|99-104|共6页
  • 作者单位

    Shell International Exploration & Production Inc., 200 North Dairy Ashford, Houston, Texas 77019, USA(Present address: Cobalt International Energy L.P., Two Post Oak Central, 1980 Post Oak Boulevard, Suite 1200, Houston, Texas 77056, USA e-mail: scot.fraser@cobaltintl.com);

    BP Exploration Operating Company Ltd, Chertsey Road, Sunbury on Thames, Middlesex TW16 7LN, UK;

    Shell International Exploration & Production Inc., 200 North Dairy Ashford, Houston, Texas 77019, USA(Present address: Cobalt International Energy L.P., Two Post Oak Central, 1980 Post Oak Boulevard, Suite 1200, Houston, Texas 77056, USA e-mail: scot.fraser@cobaltintl.com);

    School of Earth, Atmospheric and Environmental Sciences, University of Manchester, Oxford Road, Manchester M13 9PL, UK;

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