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The novel technology for reservoir stimulation: in situ generation of carbon dioxide for the residual oil recovery

机译:储层刺激新技术:原位生成剩余油回收二氧化碳

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The gas and chemical flooding for reservoir stimulation with residual hydrocarbons reserves are highly relevant problem of current oil and gas recovery strategy. The of this paper is laboratory study and field implementation of new gas-EOR technology—in situ carbon dioxide generation technique for CO2-liquid slug formation under oil displacement, increasing the reservoir sweep efficiency and residual oil recovery. This paper presents a summary of a wide range of laboratory tests conducted on different core samples and chemical compositions. Several physical and hydrodynamic phenomena of in situ CO2?generation in highly permeable zones of a porous medium have been investigated as a part of complex study, which involved laboratory tests on the field-scale industrial technology applications, determination of optimal concentrations of foaming agents and inhibiting additives in gas-releasing solutions, etc. The results of laboratory experiments showed that the incremental recovery ranged between 30 and 35% oil original in place. The unique results of the field implementation provide developing an optimal technological scheme of reservoir stimulation with residual oil reserves both onshore and offshore oil fields. Technology of in situ CO2?generation was applied on the group of wells on Penglai offshore oil field (Bohai Bay). Incremental oil production for field operation was 37,740 bbl of crude oil. Theoretical and laboratory studies, as well as the outcomes of industrial implementation of a new method of residual oil recovery, using a CO2-slug confirm technology and economic profitability of the proposed solution.
机译:残留碳氢化合物储量的储层刺激的气体和化学洪水是当前石油和天然气回收策略的高度相关问题。本文的实验室研究和现场实施新的气体技术原位二氧化碳发电技术,用于油位移下的CO2-液体块形成,增加了储层扫描效率和残留的储存。本文介绍了在不同核心样品和化学组成上进行的各种实验室测试的概要。原位二氧化碳的几种物理和流体动力现象?在多孔介质的高渗透区中产生的一部分是复杂研究的一部分,涉及对现场工业技术应用的实验室测试,确定发泡剂的最佳浓度和发泡剂的测定抑制气体释放溶液中的添加剂等。实验室实验的结果表明,增量恢复范围在30%至35%的油原件之间。现场实施的独特结果提供了陆上和海上油田的剩余石油储备储层刺激的最佳技术方案。原位二氧化碳的技术应用于蓬莱海上油田(渤海湾)的井井组。用于现场操作的增量油生产是37,740 BBL的原油。理论和实验室研究,以及使用CO2-SLUG的剩余储存方法的工业实施的结果,以及所提出的解决方案的经济盈利能力。

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