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Additional Applications of Optimal Artificial Lift Strategies in the Permian Basin

机译:二叠液盆地最佳人工升力策略的额外应用

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Maximizing well performance strongly depends on artificial lift installation (AL), operational maintenance, and reservoir performance over time. Operators in the Permian Basin often follow neighboring operators’ AL methods without further optimization. While implementing one form of AL could maximize initial production and yield quicker payout, these installations could hinder long-term hydrocarbon recovery and economics. Therefore, an AL strategy using a holistic reservoir performance analysis could optimize production and operators’ economics. This study evaluates additional applications of various AL strategies in Northern Midland and Delaware Basins based on production histories, general operation practices, and reservoir modeling. The study reviews the regional reservoir characteristics and general AL practices in Third Bone Spring and Lower Spraberry formations and built and calibrated numerical simulation models with production histories. The study then used those calibrated models to run various cases with different AL methods. Finally, the study performed economic analyses for different AL methods. This paper reviews the workflow to select an optimal AL strategy, compares strategies in the Northern Midland Basin Lower Spraberry and in the Delaware Basin Third Bone Spring, and reviews additional opportunities on University Lands. The study suggests best practices that can be used by other Permian Basin operators. Similar previous findings in other parts of the Midland Basin, these new case studies confirm that operators who implement AL strategies on a larger scale have a larger probability of success in their economics. The productivity index (PI) of wells decline with time in unconventional reservoirs, and characterizing well PI over time should benefit these long term AL strategies decision. The scale of development has a large influence on the AL strategy.
机译:最大化井性能强烈取决于人工升降装置(AL),运营维护和水库性能随着时间的推移。二叠纪盆地的运营商经常遵循邻近的运营商的AL方法,而无需进一步优化。在实施一种形式的AL可以最大化初始生产和收益率的同时,这些装置可能会阻碍长期的碳氢化合物回收和经济学。因此,使用整体储层性能分析的AL策略可以优化生产和运营商的经济学。本研究评估了基于生产历史,一般操作实践和水库建模的北部米德兰和特拉华盆地各种AL策略的额外应用。该研究审查了第三骨弹簧和下弹簧组中的区域储层特征和一般AL实践,并用生产历史建造和校准数值模拟模型。然后,该研究使用那些校准的模型以不同的AL方法运行各种案例。最后,该研究对不同的AL方法进行了经济分析。本文综述了工作流程,以选择最佳的AL策略,比较北部米德兰河流域下游和特拉华州盆地第三骨春季的策略,并点评大学土地的额外机会。该研究表明,其他二叠纪盆地运营商可以使用的最佳实践。这些新案例研究中,米德兰盆地其他地区的同类发现确认,在更大规模上实施AL策略的运营商在经济学中取得了较大的成功概率。井中的生产率指数(PI)随着非传统水库的时间而下降,并随着时间的推移表征PI良好,应使这些长期的律师策略决定受益。发展规模对AL策略产生了很大影响。

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