墨西哥湾西南部沿墨西哥脊海底天然石油渗漏的成因:石油系统的意义和潜力

G. Pérez-Drago, G. Pérez-Cruz, P. Chenet
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引用次数: 0

摘要

对墨西哥脊省海底油气渗漏的几项卫星测绘和活塞岩心研究表明,存在一个活跃的石油系统。通过柱塞岩心对海底沉积物中油气的生物标志物分析,表明其流体型分布(油气)呈排列模式,主要与上侏罗统富碳酸盐岩烃源岩亲和。另一方面,根据区域地下解释,该区潜在的上侏罗统烃源岩位于气窗以上。因此,在海床上观察到的石油显示与目前烃源岩可能排出的碳氢化合物类型之间似乎没有对应关系。本工作的目的是通过地质时代来评价油气系统要素的埋藏史和热压状态,这些因素与深层热源的油气排出和流体运移的时间有关。这是通过二维盆地建模方法来实现的,该方法考虑了热流传递、压实有效应力和通过模拟地质时间进行的HC流体流动建模。该模型旨在解释海底碳氢化合物渗漏类型的起源以及对该省碳氢化合物潜力的影响
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Origin of Natural Oil Seabed Seepage Along Mexican Ridges, Southwestern Gulf of Mexico: Petroleum Systems Implications and Potential
Several satellite mapping and piston core studies of oil and gas seabed seepage over the Mexican Ridges Province indicate the existence of an active petroleum system. Biomarker analysis of hydrocarbons recovered from the sea floor sediments by piston cores, indicate an aligned pattern of fluid type distribution (oil-gas) with a predominant Upper Jurassic carbonate-rich source rock affinity. On the other hand, based on regional subsurface interpretation, the potential Upper Jurassic source rocks in this region are found at depths well above the gas window. Therefore, it seems that there is no correspondence between oil shows observed on the seabed and the type of hydrocarbons that the source rocks might be expelling at present day. The objective of this work is to evaluate the petroleum system elements burial history and the thermal-pressure regimes through geological time, responsible for the timing of oil and gas expulsion and fluid migration from deep thermogenic sources. This is accomplished throughout a 2D basin modeling approach accounting for heat flow transfer, compaction-effective stress and HC fluid flow modeling through simulated geological time. The model aims to explain the origin of the type of seabed hydrocarbons seepage and the implications for the hydrocarbon potential of the Province
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