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Surpression de fluides et fracturation de roches mères en différents contextes tectoniques : modélisation analogique et exemples de terrain

机译:不同构造背景下母岩的流体超压和压裂:模拟建模和现场实例

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摘要

The study of fluid overpressures and hydraulic fracturing in source rocks can help us to understand the mechanisms, which are responsable for these phenomena. During the last few years, the interest in such processes has highly grown, especially through the influence of petroleum companies, which extract hydrocarbons from unconventional reservoirs. In this work, we have chosen to develop two different approaches for the study of these mechanisms: (1) field studies and (2) physical modelling. Thereby, we show that fluid overpressures and hydraulic fracturing are common in sedimentary basins worldwide. Bedding-parallel fibrous veins (beef) and solid hydrocarbon veins (bitumen) are the resulting structures. We also show that fluid overpressures can highly affect the deformation style in sedimentary basins, especially by causing thrust-detachments within source rocks. By the using of a new physcial modelling technique, we have identified the mechanisms, which are responsible for fluid overpressures and hydraulic fracturing. Indeed, during hydrocarbon generation, the solid organic matter becomes liquid, which leads to chemical compaction of the sediment. By a mechanism of load transfer, fluid overpressures rise to lithostatic values. However, volume changes also contribute, and are able to induce hydraulic fractures in the rocks.
机译:对烃源岩中流体超压和水力压裂的研究可以帮助我们理解引起这些现象的机理。在过去的几年中,人们对这种方法的兴趣日益增长,尤其是受到石油公司的影响,石油公司从非常规油藏中提取了碳氢化合物。在这项工作中,我们选择开发两种不同的方法来研究这些机制:(1)现场研究和(2)物理建模。因此,我们表明,流体超压和水力压裂在全世界的沉积盆地中很普遍。顺层平行的纤维脉(牛肉)和固体碳氢化合物脉(沥青)是最终的结构。我们还表明,流体超压会极大地影响沉积盆地的变形方式,特别是引起烃源岩内的推力分离。通过使用新的物理建模技术,我们确定了引起流体超压和水力压裂的机理。实际上,在烃生成过程中,固体有机物变为液体,这导致沉积物的化学压实。通过载荷传递机制,流体超压上升到静压值。但是,体积变化也有贡献,并且能够在岩石中引起水力压裂。

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    Zanella Alain;

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  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 fr
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