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Reservoir Implications of a Spill-Fill Sequence of Reservoir Charge Coupled with Viscosity and Asphaltene Gradients from a Combination of Water Washing and Biodegradation

机译:储层填充序列的储层填充序列与粘度和沥青质梯度从水洗和生物降解的组合耦合耦合

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Reservoirs with multiple processes that impact the quality and distribution of crude oils can be complex. Here, a series of seven reservoirs in the North Sea contain a viscosity profile that is strongly affected by a spill-fill sequence of reservoir charging, biodegradation, water washing, and variation in thermal maturity. Mapping the viscosity gradient and its origins is critical to understand how each factor contributes to the complexity of these reservoirs. Additionally, evaluation of reservoir connectivity is key. Combined studies of downhole fluid analysis (DFA) and high-resolution compositional analysis by comprehensive two-dimensional gas chromatography (GC×GC) can be used to unravel the contributions of various effects and provide an improved understanding of the reservoir. The seven reservoirs examined are consistent with a simple description of the multiple processes that contribute to the viscosity gradient and connectivity analysis. The maturity of charge in this spill-fill sequence has continued to increase with time; consequently, crude oil in deepest reservoir is most mature and the shallowest, the least mature. The oil spills from the oil- water contact (in these injectite reservoirs); consequently, the deepest reservoir is the least biodegraded and the shallowest reservoir the most biodegraded. Observations here are consistent with both biodegradation and water washing being dominated by in-reservoir confinement of the oil as opposed to during migration. The deepest reservoir exhibits mild biodegradation and mild water washing, while the nearby shallowest reservoir exhibits severe biodegradation and severe water washing. Finally, in this spill-fill process, the replacement of new oil for old, especially in the deepest reservoirs, indicates excellent reservoir connectivity.
机译:具有影响原油质量和分布的多种工艺的水库可以复杂。在这里,北海的一系列七个储存器含有粘度曲线,受储层充电,生物降解,水洗和热成熟度变化的溢出填充序列强烈影响。映射粘度梯度及其起源对于了解各因素如何促进这些水库的复杂性至关重要。此外,储层连接的评估是关键。通过综合二维气相色谱(GC×GC)的井下液体分析(DFA)和高分辨率组成分析的组合研究可用于解开各种效果的贡献,并提供对储层的改进了解。所检查的七个储存器是一致的,其简单地描述了有助于粘度梯度和连接分析的多种过程。这种溢出填充序列中的收费成熟度继续随时间而增加;因此,最深储层中的原油是最成熟的,最浅的,最少成熟。从油水接触(在这些注射储层中)的漏油机;因此,最深的水库是最不可生物降解和最浅的水库,最具生物降解。这里的观察结果与生物降解和水洗在覆盖物中的储层和迁移期间相反。最深的水库表现出温和的生物降解和温和的水洗,而附近的较浅的水库表现出严重的生物降解和严重水洗。最后,在这种溢出填充过程中,更换旧油,特别是在最深的水库中,表明了出色的水库连接。

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