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Applications of petroleum geochemistry to exploration and reservoir management

机译:石油地球化学在勘探和储层管理中的应用

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Petroleum geochemistry improves exploration efficiency by accounting for many of the variables that control the volumes of crude oil and natural gas available for entrapment, including source-rock distribution, richness and quality, thermal maturity, and the timing of generation-migration-accumulation relative to trap formation. It is most powerful when used with other disciplines, such as seismic sequence stratigraphy and reservoir characterization. Four key technology milestones form the basis for most modern applications of geochemistry to exploration. These are the concepts and applications of (1) petroleum systems and exploration risk, (2) biomarkers, stable isotopes, and multivariate statistics for genetic oil-oil and oil-source rock correlation, (3) calibrated three-dimensional thermal and fluid-flow modeling, and (4) controls on petroleum composition by secondary processes. Petroleum geochemistry offers rapid, low-cost evaluation tools to aid in understanding development and production problems. Some technology milestones in reservoir geochemistry include (1) assessment of vertical and lateral fluid continuity, (2) determination of proportions of commingled production from multiple zones and leaky casing, (3) prediction of oil quality in reservoir zones, and (4) prediction of gas/oil and oil/water contact locations. As described in the conclusions, future research will continue a trend toward predictive geochemistry. Examples of predictive tools that draw major research support include piston-core surveys to assess deepwater petroleum systems prior to drilling and three-dimensional basin modeling to predict the regional timing of generation, migration, and accumulation of petroleum. Among other research objectives, models are needed to better predict the distribution and quality of petroleum in reservoirs. (C) 2002 Elsevier Science Ltd. All rights reserved. [References: 176]
机译:石油地球化学通过考虑许多控制可用于圈闭的原油和天然气量的变量,从而提高勘探效率,这些变量包括烃源岩分布,富集度和质量,热成熟度以及相对于世代迁移-积累的时间陷阱形成。与其他学科(例如地震层序地层学和储层表征)一起使用时,它功能最强大。四个关键技术里程碑构成了地球化学在勘探中最现代应用的基础。这些是以下概念和应用:(1)石油系统和勘探风险;(2)生物标志物,稳定同位素;以及遗传油与油源岩相关性的多元统计;(3)校准的三维热力和流体-流动建模,以及(4)通过次级过程控制石油成分。石油地球化学提供快速,低成本的评估工具,以帮助了解开发和生产问题。油藏地球化学中的一些技术里程碑包括:(1)评估垂直和横向流体的连续性;(2)确定来自多个区域和泄漏套管的混合采油比例;(3)预测油藏区的油质;以及(4)预测气/油和油/水接触位置。如结论中所述,未来的研究将继续朝着预测地球化学的趋势发展。可以得到主要研究支持的预测工具包括:活塞岩心调查,以在钻探之前评估深水石油系统;三维盆地建模,以预测石油的产生,运移和聚集的区域时间。在其他研究目标中,需要模型来更好地预测储层中石油的分布和质量。 (C)2002 Elsevier ScienceLtd。保留所有权利。 [参考:176]

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