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首页> 外文期刊>Geofluids >Quantitative estimation of overpressure caused by gas generation and application to the Baiyun Depression in the Pearl River Mouth Basin, South China Sea
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Quantitative estimation of overpressure caused by gas generation and application to the Baiyun Depression in the Pearl River Mouth Basin, South China Sea

机译:南海珠江口盆地白云De陷天然气成因引起的超压定量估算

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摘要

Hydrocarbon generation can yield high fluid pressures in sedimentary basins as the conversion of solid kerogen to hydrocarbons can result in an increase in fluid volume. To quantify the relationship between gas generation and overpressure in source rocks, a set of equations for computing the pressure change due to gas generation has been derived. Those equations can be used to quantitatively estimate overpressure generated by type III kerogen in source rocks by considering gas generation and leakage, gas dissolution in formation water and residual oil, thermal cracking of oil to gas, and hydrocarbon episodic expulsion from source rocks. The equations also take consideration of other factors including source rock porosity, transformation ratio, total organic carbon (TOC), hydrogen index, and compressibility of kerogen, oil, and water. As both oil and gas are taken into account in the equations, they can also be used to estimate the evolution of overpressure caused by hydrocarbon generation of type I and type II kerogen source rocks. Sensitivity analyses on the type III kerogen source rock indicate that hydrogen index is the most influential parameter for overpressure generation, while TOC and residual gas coefficient (β: ratio of residual gas over the total gas generated) have a moderate effect. Overpressure can be generated even if the gas leakage/loss in the source rock is up to 80% of the total gas generated. This suggests that the internal pressure seal of the source rock is not a critical factor on the pressure change as long as the source rocks are capable of sealing liquid oil. The equations were applied to evaluate the overpressure in the Eocene–Oligocene Enping Formation source rocks due to hydrocarbon generation in the Baiyun Depression, the Pearl River Mouth Basin by considering the source rock properties, hydrocarbon generation history, and hydrocarbon expulsion timing. Two episodes of overpressure development due to gas generation and release were modeled to have occurred in the Enping Formation source rock since 16Ma. The overpressure release at 10.2–5.3Ma via hydrocarbon expulsion was apparently related to the Dongsha phase of tectonic deformation, whereas the pressure release at 2–0Ma was due to pressure generation that was exceeded the fracture-sealing pressure in the source rocks.
机译:碳氢化合物的生成会在沉积盆地中产生很高的流体压力,因为固态干酪根向碳氢化合物的转化会导致流体体积的增加。为了量化气源岩中气体生成与超压之间的关系,推导了一组方程,用于计算由于气体生成引起的压力变化。这些方程式可用于通过考虑气体的产生和泄漏,地层水和残余油中的气体溶解,油对天然气的热裂化以及烃源岩的烃类驱逐作用来定量估算烃源岩中III型干酪根产生的超压。该公式还考虑了其​​他因素,包括烃源岩孔隙度,转化率,总有机碳(TOC),氢指数以及干酪根,油和水的可压缩性。由于在方程式中同时考虑了石油和天然气,因此它们也可以用于估算由I型和II型干酪根烃源岩的烃生成引起的超压演化。对III型干酪根烃源岩的敏感性分析表明,氢指数是产生超压影响最大的参数,而TOC和残余气体系数(β:残余气体占生成的总气体的比例)的影响较小。即使源岩中的气体泄漏/损失高达所产生的总气体的80%,也会产生超压。这表明,只要烃源岩能够密封液态油,烃源岩的内部压力密封就不是压力变化的关键因素。考虑到烃源岩的性质,生烃历史和排烃时间,应用该方程对白云De陷,珠江口盆地烃源岩造成的始新统—渐新统恩平组烃源岩超压进行了评价。自16Ma以来,恩平组烃源岩发生了两次因气体产生和释放而引起的超压发展。烃类驱出作用在10.2–5.3Ma的超压释放显然与构造变形的东沙相有关,而在2-0Ma的压力释放是由于压力产生超过了源岩中的裂缝封闭压力。

著录项

  • 来源
    《Geofluids》 |2016年第1期|129-148|共20页
  • 作者单位

    Ministry of Education Key Laboratory of Tectonics and Petroleum Resources (China University of Geosciences) Wuhan China;

    CNPC Key Laboratory of Basin Structure and Hydrocarbon Accumulation Beijing China;

    Curtin University of Technology Perth WA Australia;

    Ministry of Education Key Laboratory of Tectonics and Petroleum Resources (China University of Geosciences) Wuhan China;

    CNPC Key Laboratory of Basin Structure and Hydrocarbon Accumulation Beijing China;

    PetroChina Liaohe Oilfield Company Panjin Liaoning China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    gas generation; overpressure computing equations; Pearl River Mouth Basin; quantitative estimation; sensitivity analyses;

    机译:产气超压计算方程珠江口盆地定量估算敏感性分析;

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