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Impact of rift dynamics on palaeoenvironmental conditions and hydrocarbon system development (northern Upper Rhine Graben, SW Germany)

机译:Rift Dynamics对古环境条件和碳氢化合物系统发展的影响(北莱茵河德国

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摘要

The Upper Rhine Graben (URG), a classical hydrocarbon (HC) province, is part of the European Cenozoic Rift System. The rift graben development has led to a complex basin fill of terrestrial and marine Cenozoic deposits, providing several HC source and reservoir units. The aim of this study is the multidisciplinary analysis of the palaeoenvironmental conditions and source-rock development within the transgressive marine intervals, and the palaeothermal history of the graben system to improve the understanding of the HC system development. Palaeoenvironmental conditions are strongly influenced by rift-related tectonic activity. Transgressive marine intervals in times of major subsidence show high terrestrial input from the graben shoulders, leading to mainly terrigenous gas-prone kerogen, while transgressive marine intervals during weak tectonic activity are dominated by marine-brackish palaeoenvironments and oil-prone kerogen. This differs clearly from the previously suggested HC potential of these intervals. Thermal maturation analysis shows nearly constant maturation with depth, which is atypical for burial-controlled maturation. It indicates significant secondary thermal overprinting related to long-lasting very hot hydrothermal fluid systems, concentrated along fault zones. Therefore the development of the depositional setting, kerogen composition, thermal maturation and the HC potential is directly linked to the dynamics of the rift system development.
机译:上莱茵河Graben(URG)是一种古典烃(HC)省,是欧洲新生代裂痕系统的一部分。 Rift Graben开发导致了陆地和海洋新生代存款的复杂盆地,提供了几个HC源和水库单位。本研究的目的是对众多环境条件的多学科分析和源 - 岩石发展在近海海洋间隔内,以及抓住争夺系统的古董史,以提高对HC系统开发的理解。古环境条件受裂谷相关构造活动的强烈影响。在主要沉降中的近海海洋间隔展示了来自Graben肩部的高陆地投入,主要是植物易受性的易于恶作剧,而在弱势构造活动期间的海洋周期间隔是由海洋咸古环境和石油易于激发剂的主导。这从先前建议的这些间隔的HC潜力中显然不同。热成熟分析表明,具有深度的几乎恒定成熟,这对于埋葬的成熟是非典型的。它表示与持久的非常热的热水流体系统相关的显着二次热叠印,沿着断层区域浓缩。因此,沉积设置,干原组合物,热成熟和HC电位的发展与裂缝系统发育的动态直接相关。

著录项

  • 来源
    《Petroleum Geoscience》 |2018年第4期|共15页
  • 作者单位

    GeoResources STC Hansastr 1 D-69181 Leimen Germany;

    GeoResources STC Hansastr 1 D-69181 Leimen Germany;

    Rhein Petr GmbH Mittermeierstr 31 D-69115 Heidelberg Germany;

    GeoResources STC Hansastr 1 D-69181 Leimen Germany;

    Heidelberg Univ Inst Earth Sci Neuenheimer Feld 234 D-69120 Heidelberg Germany;

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  • 正文语种 eng
  • 中图分类 石油、天然气工业;
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