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An Integrated Approach to Selecting and Optimizing Demulsifier Chemical Injection Points using Shearing Energy Analysis: A Justification for Downhole Injection in High Pressured Well

机译:利用剪切能量分析选择和优化破乳剂化学注入点的综合方法:高压井下注入的合理性

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Chemical demulsifiers are routinely injected into the petroleum production system at several points to effectively resolvernwater-in-oil emulsion issues. Point of injection varies from downhole through wellhead and manifolds to stocktanks (Batchrntreatment). Selection of the best injection points during oilfield practices still remains a very challenging task for bothrnoperators and chemical vendors. Many researches have not been done on this subject matter, and hence remains the focus ofrnthis study.rnIn this paper , models to carefully analyze and study the relationship between shearing energy and pressure drops at variousrnpoints in a production system is developed. It analyses the Shearing action as the reservoir fluid flows through formationrnpores, perforations, tubing, wellhead chokes and the surface flowline. This program determines the best injection points forrndemulsifier chemicals to ensure their adequate mixing, mobility and strong partitioning at the water-oil interfaces where theirrnactions are needed. This novel approach applies to several well geometry and completions, ranging from open to cased wells.rnDeveloped models were tested and validated with real data from a known oilfield in Nigeria. Wellhead and downhole injectionrn(through gas lift valves) appear to be one of the best practicable injection points selected by the program. This selectionrnalready considered the current conditions of the field and produced fluid and also the nature of demulsifier chemical in use, inrnterms of its residence time of action. Results obtained vary with changes in these factors as the reservoir becomes depletedrnand workover operations are performed.rnThis paper emphasises the impact of shearing energy and pressure drops on the effectiveness of demulsifier chemicals.rnDetermination of appropriate injection points combats lots of operational and economical problems such as over-treating andrnre-emulsification. It reduces unnecessary high budgets for demulsifier chemicals as injection rates will be optimized. Thisrnpaper also discusses the benefits that can be realized by breaking emulsions downhole, and contributes to the existing literaturernin the design and construction of production chemical injection program for a green field development. The authors anticipaternthat the new concept of shearing energy analysis presented in this paper would contribute more to improving the technology ofrnchemical-demulsification.
机译:通常在多个位置将化学破乳剂注入石油生产系统,以有效解决油包水乳化问题。注入点从井下到井口,歧管再到储罐都不同(批处理)。对于精油制造商和化学品供应商而言,在油田实践中选择最佳的注入点仍然是一项非常艰巨的任务。关于该主题尚未进行许多研究,因此仍然是该研究的重点。本文中,开发了仔细分析和研究生产系统中各个点处的剪切能与压降之间关系的模型。它分析了当储层流体流过地层孔眼,射孔,油管,井口扼流圈和地表流线时的剪切作用。该程序确定了破乳剂化学品的最佳注入点,以确保它们在需要其作用的水油界面处的充分混合,流动性和强力分配。这种新颖的方法适用于从裸眼井到套管井的多种井眼几何形状和完井情况。开发的模型已使用来自尼日利亚一个已知油田的真实数据进行了测试和验证。井口和井下注入(通过气举阀)似乎是该程序选择的最佳可行注入点之一。该选择已经考虑了油田的当前条件和采出的流体,以及所使用的破乳剂化学物质的性质,以及其作用时间的影响。随着储层的枯竭和修井作业的进行,获得的结果会随这些因素的变化而变化。本文着重强调剪切能和压降对破乳剂化学物质效果的影响。确定合适的注入点可解决许多操作和经济问题,例如过度处理和乳化。由于将优化注入速率,因此减少了破乳剂化学品不必要的高预算。本文还讨论了通过在井下破坏乳液可以实现的好处,并为现有文献为绿色油田开发的生产化学注入程序的设计和施工做出了贡献。作者预计,本文提出的剪切能分析的新概念将为改进化学破乳技术提供更多的帮助。

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