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Integrating comprehensive two-dimensional gas chromatography and downhole fluid analysis to validate a spill-fill sequence of reservoirs with variations of biodegradation, water washing and thermal maturity

机译:集成了全面的二维气相色谱和井下流体分析,以验证具有生物降解,水洗和热成熟度变化的储层的溢流填充顺序

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Optimization of production depends heavily on crude oil composition and its variation within and across multiple reservoirs. In particular, asphaltene content has enormous impact on crude oil viscosity and the economic value of reservoir fluids. Thus, it is important to understand the primary controls on crude oil composition and asphaltene distributions in reservoirs. This paper examines a complex oilfield in the North Sea that contains seven separate reservoirs. The crude oil is believed to have spilled from deeper into shallower reservoirs during reservoir charging. In-situ asphaltene content is measured by downhole fluid analysis (DFA) and is generally consistent with a spill-fill sequence in reservoir charging. Detailed compositional analysis of crude oil samples by comprehensive two-dimensional gas chromatography (GC x GC) was used to determine the extent of water washing, biodegradation and thermal maturity among the reservoirs. Increased biodegradation and water washing in the shallower reservoirs is consistent with a spill-fill sequence. Aromatic and alkylated aromatic compounds decrease according to a combination of water solubility and susceptibility to biodegradation in the shallower reservoirs. Four thermal maturity biomarker ratios show that the shallower reservoirs contain less mature oil, consistent with a spill-fill sequence. The combination of DFA for bulk compositional analysis and GC x GC for detailed compositional analysis combined with geochemical interpretation is an effective tool to unravel complex oilfield scenarios. (C) 2016 Elsevier Ltd. All rights reserved.
机译:生产的最优化在很大程度上取决于原油成分及其在多个储层之间和之间的变化。特别地,沥青质含量对原油粘度和储层流体的经济价值具有巨大影响。因此,重要的是要了解油藏中原油成分和沥青质分布的主要控制方法。本文研究了北海的一个复杂油田,该油田包含七个独立的油藏。据信原油在储层装填过程中已从较深的储层泄漏到较浅的储层。原位沥青质含量是通过井下流体分析(DFA)进行测量的,通常与储层注油中的溢流填充顺序一致。通过全面的二维气相色谱(GC x GC)对原油样品进行详细的成分分析,以确定储层之间的水洗程度,生物降解程度和热成熟度。在较浅的水库中增加的生物降解作用和水洗与溢流填充顺序一致。在较浅的储层中,水溶性和对生物降解的敏感性相结合,使芳香族和烷基化的芳香族化合物减少。四个热成熟度生物标志物比率显示,较浅的储层中含有较少的成熟油,与溢油填充顺序一致。将DFA用于散装成分分析,将GC x GC用于详细的成分分析,再结合地球化学解释,是解决复杂油田情况的有效工具。 (C)2016 Elsevier Ltd.保留所有权利。

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