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Validating Reserves Estimation From A Simple Analytical Methodology with a Full-field 3D Model in a Giant Brown Reservoir

机译:用巨型棕色水库中具有全场3D模型的简单分析方法验证储备估计

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This paper presents the results of a 3D model constructed for a giant, densely faulted reservoir in one of the biggest fields in the Niger Delta. The study also showcases how simple analytical techniques applied in a technically thorough manner can achieve close or similar results to those from a calibrated 3D simulation model. In carrying out this work, a detailed 3D model was built and calibrated for a very mature reservoir; incorporating results of the recently drilled wells in the field, revalidated integrated data and latest historical performance data. The reservoir, which is densely faulted by a conjugate system of synthetic and antithetic faults, is the largest in the field accounting for almost half of the field’s resource volumes. The large number of NW-SE faults, coupled with the relatively high offtake rates from the reservoir, have throttled the activity of the otherwise infinite aquifer and led to severe pressure depletion in the reservoir. Consequently, a lot of the producers quit at relatively low water cuts (~40 – 50%). One of the objectives of the detailed modelling study was to investigate the benefits and gains of gaslifting existing and future new wells. Prior to this study, simple decline curve analysis (DCA) had been carried out independently on a well-by-well basis using estimated abandonment conditions under gaslift- assisted flow to predict the recoveries and gains from gaslifting.
机译:本文介绍了尼日尔三角洲最大领域的一个巨型,密集断层储层的3D模型的结果。该研究还展示了在技术上彻底的方式应用的简单分析技术可以实现与校准的3D模拟模型的那些实现密切或类似的结果。在进行这项工作时,为一个非常成熟的储层构建和校准了详细的3D模型;在现场,重新验证的集成数据和最新的历史性能数据中纳入最近钻孔井的结果。水库,这是由密集的合成和反向断层的共轭系统故障,是该领域的会计最大的几乎各占一半,外地的资源卷。大量的NW-SE故障,与储存器的相对高的吸盘速率相结合,已经节流了其他无限含水层的活性,并导致储层中的严重压力消耗。因此,许多生产商在相对低的水切口(〜40-50%)戒烟。详细建模研究的目标之一是调查燃气现有和未来新井的益处和收益。在本研究之前,使用估计的遗传辅助流动下的估计的遗弃条件,在良好的良好良好的基础上独立地进行了简单的下降曲线分析(DCA),以预测燃气制剂的回收率和收益。

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