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Recoverable Reserve Estimation in a Tight Gas Reservoir During the Exploration Stage, Neuquen, Argentina

机译:阿根廷内乌肯,勘探阶段致密气藏可采储量估算

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A rapid and an effective reservoir simulation model was built based on limited information. 3D seismic impedance, two exploratory wells’ log interpretation, a core data, and a well test consisting of an isochronal test and, several months later, an extended flow followed by long build up test were basic available data for this field. The main objective of this study is to estimate recoverable reserve with or without hydraulic fracturing in Mulichinco formation at the Paso Del Indio Field. Material balance and decline curve analyses have important limitations to estimate ultimate recoverable reserves in the tight gas reservoirs. Well types that are derived from the conceptual simulation models do not reflect the effective drainage area or permeability heterogeneity in the field. A representative permeability in well spacing area should be averaged harmonically or geometrically. In order to estimate the ultimate recoverable reserves in the tight gas reservoirs, permeability heterogeneity or the effective available drainage area to hydraulic fractures should be simulated effectively. Relatively small changes in permeability can results in unsuccessful fracture design and in uneconomical flow rates. A very quick and effective simple reservoir simulation model was established to estimate recoverable reserves rather than using conventional volumetric, material balance, and decline curve analysis in tight gas reservoirs. Not having any production histories, well test information was used very successfully as history matching information to validate the geological, petrophysical, and PVT models.
机译:基于有限的信息,建立了快速有效的油藏模拟模型。 3D地震阻抗,两个探井的测井解释,一个核心数据以及一个由等时测试组成的试井,几个月后,一个扩展的流量随后又进行了长的增容测试,这是该领域的基本可用数据。这项研究的主要目的是估计Paso Del Indio油田Mulichinco地层中有无水力压裂的可采储量。物质平衡和下降曲线分析对估算致密气藏的最终可采储量具有重要的局限性。从概念模拟模型得出的油井类型不能反映现场的有效排水面积或渗透率非均质性。井距区域的代表性渗透率应进行谐波或几何平均。为了估算致密气藏的最终可采储量,应有效模拟渗透率非均质性或有效的水力压裂排水面积。渗透率的相对较小的变化会导致不成功的裂缝设计和不经济的流量。建立了一个非常快速有效的简单储层模拟模型来估算可采储量,而不是在致密气藏中使用常规的体积,物料平衡和下降曲线分析。由于没有任何生产历史,因此很好的测试信息非常成功地用作历史匹配信息,以验证地质,岩石物理和PVT模型。

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