首页> 外文期刊>Arabian journal of geosciences >Hydrocarbon-generating potential of the Eocene Thebes Formation, Gulf of Suez: 1D basin modeling as a supplementary tool for source rock evaluation
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Hydrocarbon-generating potential of the Eocene Thebes Formation, Gulf of Suez: 1D basin modeling as a supplementary tool for source rock evaluation

机译:苏氏THESBES形成的烃源,SUEZ的海湾:1D盆地建模作为源岩体评估的补充工具

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The present work provides high-resolution modeling of the thermal maturation of the Eocene Thebes Formation using a multi-1D approach. The model focuses not solely on the thermal maturity but also on timing of hydrocarbon generation (primary generation and secondary cracking), adsorption by organic matter, and expulsion. The time-lapse conceptual model was developed using well log data, geochemical analyses, and composite logs. The stratigraphic sequence of the Belayim Marine oil field was subdivided into a time series based on the tectonic framework of the Gulf of Suez. An elevated basal heat flow has been assigned throughout the rifting phases and basin evolution. The simulation developed for seven wells reveals variations in burial, thermal history, and accordingly the thermal maturity. The predicted thermal maturity ranges from immature to mature with a different tendency to generate hydrocarbons (both primary generation of oil and/or gas secondary cracking) dependent on kerogen type, basin development, and burial history. Hydrocarbon generation (oil) starts after the Messinian Time Event during the deposition of the Post-Zeit Formation. Hydrocarbon generation was related to burial rather than basin evolution for the 113-M-27, BM-23, BM-65, and BM-70 wells. Conversely, generation correlated principally to basin development particularly Messinian Time Event for the 113-M-34 well. Expulsion occurred subsequent to generation of thermogenic gas (secondary cracking of generated oil). It is not possible to investigate the relationship between the production index and thermal maturity as a consequence of expulsion that reduced the S1 values. The different levels of thermal maturity (potential, active, and effective source rock) allow for the differentiation of regions of potential hydrocarbon accumulation that were charged from the Thebes Formation.
机译:本作工作提供了使用多1D方法的eocene TheBES形成的热成熟的高分辨率建模。该模型不仅专注于热成熟度,而且侧重于烃类生成(初发和二次裂化),有机物质吸附和排出。使用井日志数据,地球化学分析和复合日志开发了延时概念模型。 Belayim海洋油田的地层序列被细分为基于Suez海湾的构造框架的时间序列。在整个溃疡和盆地进化中分配了升高的基础热流。为七个井开发的仿真揭示了埋葬,热历史的变化,并因此提供了热成熟度。预测的热成熟度从不成熟到成熟,不同倾向于产生碳氢化合物(石油和/或气体二次裂化的初步),依赖于角蛋白类型,盆地发育和埋葬历史。碳氢化合物产生(油)在沉积后Zeit形成期间的Messinian时间事件之后开始。碳氢化合物产生与埋葬而不是盆地演化为113-M-27,BM-23,BM-65和BM-70孔。相反,一代主要与盆地开发有关113-M-34井的盆地时间事件。在产生热气体(产生的油的二次开裂)之后发生排出。由于降低S1值的驱逐,不可能研究生产指数和热成熟之间的关系。不同水平的热成熟度(电位,有效和有效源岩)允许潜在烃积聚区域的分化,其从THEBES形成中加入。

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