利用油气系统建模和储层流体地球动力学解译神秘的储层性质

R. Pierpont, Kristoffer Birkeland, A. Cely, T. Yang, Li Chen, V. Achourov, S. Betancourt, Jesus A. Cañas, Julia C. Forsythe, A. Pomerantz, Jing Yang, H. Datir, O. Mullins
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引用次数: 0

摘要

通过跨学科的大量数据采集,对海上油田的两个相邻储层进行了评估;得出了一些令人惊讶的观察结果。近邻储层生物降解程度不同,但相关标准地球化学标志相互矛盾。出乎意料的是,生物降解程度越高的原油沥青质含量越低,并且该油藏在岩心和上部结构中有一些较重的末端沉积,而不是在油水接触面(OWC)处,特别是在生物降解的情况下。蜡在非生物降解油中似乎是一个问题。这些令人困惑的观察结果,加上不明确的连通性,给油田开发规划带来了不确定性。结合石油系统和储层流体地球动力学的考虑,将观测结果分解为一个单一的、自一致的地质情景,即储层岩石和流体在地质时期的共同演化。生物降解陷阱填充的溢出-填充序列有助于解释生物降解和蜡含量的差异。随后,最近的凝析油堆积在一个断块中,并混合在第二个断块的目标油藏中,这解释了C7和C16指标之间生物降解指标的冲突。凝析油与黑油上部结构接触处沥青质的不稳定性和沉积,以及凝析油充注过程中这种接触的运动,解释了岩心重端沉积。此外,这一过程说明了相应油中的沥青质稀释和耗尽。井下流体分析(DFA)沥青质梯度和地震成像地球化学标志的变化澄清了这些储层可能的连通性。地质情景为所有类型的储层数据提供了一个比较基准,并很容易将项目纳入生产问题。随着对相应油藏和开发策略的深入了解,该油田最初明显的难题已经得到解决。
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Enigmatic Reservoir Properties Deciphered Using Petroleum System Modeling and Reservoir Fluid Geodynamics
Two adjacent reservoirs in offshore oil fields have been evaluated using extensive data acquisition across multiple disciplines; several surprising observations were made. Differing levels of biodegradation were measured in the nearly adjacent reservoirs, yet related standard geochemical markers are contradictory. Unexpectedly, the more biodegraded oil had less asphaltene content, and this reservoir had some heavy end deposition in the core but upstructure, not at the oil-water contact (OWC) as would be expected, especially with biodegradation. Wax appears to be an issue in the nonbiodegraded oil. These many puzzling observations, along with unclear connectivity, gave rise to uncertainties about field development planning. Combined petroleum systems and reservoir fluid geodynamic considerations resolved the observations into a single, self-consistent geo-scenario, the co-evolution of reservoir rock and fluids in geologic time. A spill-fill sequence of trap filling with biodegradation helps explain differences in biodegradation and wax content. A subsequent, recent charge of condensate, stacked in one fault block and mixed in the target oil reservoir in the second fault block, explains conflicting metrics of biodegradation between C7 vs. C16 indices. Asphaltene instability and deposition at the upstructure contact between the condensate and black oil, and the motion of this contact during condensate charge, explain heavy end deposition in core. Moreover, this process accounts for asphaltene dilution and depletion in the corresponding oil. Downhole fluid analysis (DFA) asphaltene gradients and variations in geochemical markers with seismic imaging clarify likely connectivity in these reservoirs. The geo-scenario provides a benchmark of comparison for all types of reservoir data and readily projects into production concerns. The initial apparent puzzles of this oil field have been resolved with a robust understanding of the corresponding reservoirs and development strategies.
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