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Integrated Approach for Proper Resource Assessment of a Challenging Over-Pressured Gas Condensate Reservoir: Case Study of Analytical and Numerical Modeling of a Central Luconia Carbonate Field

机译:适当资源评估对挑战的过压气体冷凝水储层的综合方法 - 岩石碳酸盐田中的分析与数值模拟案例研究

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Proper and reliable resource assessment of hydrocarbons in-place and recoverable volumes is one of the key factors in field development planning (FDP) and determines the commitments made to the host government for the reserves to be developed (RTBD). Many times, it is critical to update the resources and reserves of a producing asset through full field reviews (FFR) to gauge the production attainment and success of initial forecasts in FDP and also to locate any upside/locked-in potential. Often uncertainties in the field development are expected to reduce as the field produces, but in many cases the results show otherwise due to lack/ inaccuracy of data or existing reservoir complexities. This paper elaborates how an integrated approach utilizing analytical methods (material balance, pressure and rate transient analysis) combined to numerical reservoir simulation is used for accurate resource assessment of an over-pressured gas condensate reservoir that suffers from lack of geological and petrophysical data, faulty production data measurement system and complex fluid and pressure behavior. A comprehensive workflow comprising of different methodologies is used to harness the available geological, petrophysical, production and pressure data. Over-pressured and compressibility corrected gas material balance and pressure and rate transient analysis (RTA) are conducted using static and flowing data to encompass the existing uncertainties on resource numbers and generate low, base and high cases. The results of these methods are then successfully utilized to construct the dynamic reservoir model for evaluation of the upside and near field exploitation (NFE) potential. The results of the full field review lead to a 50% increase in the gas initially in-place compared to FDP volumes and a significant addition in the proven reserve. This increase in volumes was investigated through proactive surveillance for a period of time and was well supported by the reservoir and well performance. A novel approach to numerically model the over-pressured gas reservoirs is developed using a simple concept of compressibility modifications supported by production data history match and analogue core data. The results of the study greatly benefited the production sharing contract (PSC) and lead to production enhancement from the field through a proper debottlenecking project.
机译:适当可靠的碳氢化合物资源评估就地和可收回的卷是现场开发规划(FDP)的关键因素之一,并确定对东道国政府的承诺(RTBD)。许多次,通过全场评论(FFR)更新生产资产的资源和储备,以衡量FDP中最初预测的生产获得和成功,并找到任何上行/锁定的潜力。通常在现场产生的情况下,实地开发中的不确定性通常会减少,但在许多情况下,结果表明,由于数据或现有的储层复杂性缺乏/不准确。本文阐述了组合到数值储层模拟的分析方法(材料平衡,压力和速率分析)的综合方法如何用于对缺乏地质和岩石物理数据,缺乏的压力气体冷凝水库的准确资源评估生产数据测量系统和复杂的流体和压力行为。包括不同方法的全面工作流程用于利用可用的地质,岩石物理,生产和压力数据。通过静态和流动数据进行过压和压缩性校正的气体材料平衡和压力和速率瞬态分析(RTA),以包括资源编号的现有不确定性并产生低,基础和高案例。然后成功地利用这些方法的结果来构建用于评估上行和近场剥削(NFE)潜力的动态储层模型。与FDP卷相比,全场审查的结果导致初始燃气增加50%,并在经过验证的储备金中有重大添加。通过主动监测一段时间来调查卷增加,并得到了水库和绩效良好的支持。使用生产数据历史匹配和模拟核心数据支持的简单可压缩性修改的简单概念,开发了一种数字模型的新方法。该研究的结果极大地利用了生产共享合同(PSC),并通过适当的脱差点项目导致该领域的生产增强。

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