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首页> 外文期刊>The Saudi Aramco journal of technology >Efficient CO2 Multistage Acid Stimulation in Deep Hot-Gas Reservoirs
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Efficient CO2 Multistage Acid Stimulation in Deep Hot-Gas Reservoirs

机译:深度热气储层中高效的CO2多级酸刺激

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Acidizing/acid fracturing is an established method of production stimulation in carbonate reservoirs Over time,reservoirs become depleted,gas production declines,and flow back initiation can require additional time and cost.Energizing/foaming the stimulation fluid was determined to efficiently improve stimulation results and enhance post-treatment well clean up.The gases most commonly used to energize the treatment fluids include nitrogen(N2)and carbon dioxide(CO2).This article presents and discusses the results of an effectiveness study offoamed acidizing treatments performed using multistage completions-successful production outcomes were achieved in depleted reservoirs.The Design-Execution-Evaluation cycle begins with a multistage fracturing well evaluation to determine whether the well is a candidate for foamed treatment.This evaluation includes studies of the reservoir data(reservoir pressure,lithology,and permeability),completion data-including fracture ports and open hole packers placement vs.hole size,reservoir net pay,and lithology-and offset wells stimulation results.Foamed multistage fracturing treatments are designed to help enhance post-stimulation performance regarding cost,operational efficiency,and completion limitations.Post-job evaluation includes highlighting the treatment as well as production analysis using a numerical simulator.The post-job evaluation also serves as an input to the design of upcoming treatments.Foamed multistage acidizing using CO2 foam proved to be successful in terms of post-treatment kickoff,clean up,and production,compared to conventionally treated wells.This success can be attributed to the following effects: 1.Faster post-fracture clean up as a result of the decreased liquid volume pumped into the reservoir.2.Higher productivity resulting from acid placement benefits enabled by introducing CO2 foam(diversion,retardation).3.Well delivery time reduction because the post-treatment N,lift was eliminated as a result of CO2 energy stored in the wellbore and the reservoir.This article presents the study of CO2 multistage fracturing treatments compared to conventionally treated multistage fracturing wells.The study results can be used to further optimize treatment designs and improve field execution of upcoming multistage fracturing operations as well as help reduce overall well delivery time.
机译:酸化/酸性压裂是碳酸盐储层中的既定生产方法随着时间的推移,储层变得耗尽,气体产量下降,并且流回启动可能需要额外的时间和成本。确定刺激/发泡刺激液,以有效地提高刺激结果和刺激结果增强治疗后井清理。最常用于激励处理流体的气体包括氮气(N2)和二氧化碳(CO2)。本文呈现并讨论了使用多级完井进行的有效性研究的有效性研究的结果在耗尽的储层中实现了生产结果。设计执行 - 评价周期开始于多级压裂井评估,以确定该井是否是泡沫处理的候选者。该评估包括对储层数据的研究(储层压力,岩性,渗透性和渗透率),完成数据 - 包括骨折端口和开孔包装机S放置vs.hole尺寸,水库净支付和岩性 - 和偏移井刺激结果。旨在帮助提高关于成本,运营效率和完成限制的促进性能。职业评估包括突出显示处理以及使用数值模拟器的生产分析。职务后的后期评估还用作即将到来的治疗的设计的输入。使用CO2泡沫的一些多级酸化证明是在治疗后的开球,清理和与常规治疗的井相比,成功可以归因于以下影响:1.由于泵入储层的液体量下降,Faster后骨折清洁。引入CO2泡沫(转移,延迟).3。由于后处理后的递送时间减少,因此由于CO2 eNE而消除了升力rgy储存在井筒和储库中。这篇文章与常规处理的多级压裂井相比,介绍了CO2多级压裂处理的研究。研究结果可用于进一步优化治疗设计,并改善即将到来的多级压裂操作的实地执行。帮助减少整体良好的交货时间。

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