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Oil Production Gains for Mature Steamflooded Oil Fields Using Propane as a Steam Additive and a Novel Smart Horizontal Producer

机译:使用丙烷作为蒸汽添加剂和新型智能水平采油机的成熟蒸汽驱油田的采油量增加

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We have conducted an experimental scaled model study to investigate the feasibility of two methods aimed at improving oil production from mature heavy oil fields. The first method involved the use of propane as a steam additive (propane:steam mass ratio of 4:100 was used in the study). The second involved the use of a novel well system consisting of a vertical injector and a smart horizontal producer. To minimize steam over-ride, the smart horizontal producer was divided into three sections, the section furthest from the injector being opened only after steam had broken through in the first two sections. The 16 in. x 16 in. x 5.6 in. physical model was scaled to present conditions in the San Ardo field in California and crude oil from the same field was used for the tests. The sides of the model consisted of 0.75 inch thick Teflon sheets to minimize heat loss, while the top and bottom consisted of 0.125 inch aluminum sheets to maximize heat conduction to the over- and under-burden. The physical model was placed in a pressure jacket containing nitrogen that provided an overburden differential pressure of about 20-40 psi during the runs. Superheated steam at 190–210°C was injected at 48 cm3/min (cold water equivalent) while maintaining the flowing pressures in the production wells at 50 psig. Liquid samples from each producer in the model were collected and treated to break emulsion and analyzed to determine water and oil volumes. Main results of the study may be summarized as follows. First, for the vertical well system, addition of propane accelerated oil production by 53% and increased ultimate oil recovery by 7% of original oil-in-place (OOIP) when compared to pure steam injection. Second, use of the smart horizontal well system increased ultimate oil recovery to 49% OOIP compared to that obtained with the vertical well system (42% OOIP).
机译:我们进行了实验规模模型研究,以研究两种方法的可行性,这些方法旨在提高成熟稠油油田的产油量。第一种方法涉及使用丙烷作为蒸汽添加剂(本研究中丙烷与蒸汽的质量比为4:100)。第二个涉及使用由垂直注入器和智能水平生产器组成的新型井系统。为了最大程度地减少蒸汽超驰,将智能卧式生产机分为三个部分,只有在前两个部分中的蒸汽突破后,才打开距喷油器最远的部分。对16英寸x 16英寸x 5.6英寸的物理模型进行了缩放,以适应加利福尼亚州San Ardo油田的现状,并使用来自同一油田的原油进行测试。模型的侧面由0.75英寸厚的特氟隆板组成,以最大程度地减少热损失,而顶部和底部由0.125英寸的铝板组成,以最大程度地将热量传导至上覆层和下覆层。将物理模型放置在包含氮气的压力外套中,该氮气在运行期间提供约20-40 psi的上覆压差。在保持生产井中的流动压力为50 psig的同时,以48 cm3 / min(当量冷水)的速度注入190–210°C的过热蒸汽。收集模型中每个生产商的液体样品并进行处理,以破坏乳液并进行分析以确定水和油的体积。研究的主要结果可以总结如下。首先,对于垂直井系统,与纯蒸汽注入相比,丙烷的添加可以使石油产量提高53%,最终石油采收率提高原始原位油(OOIP)的7%。第二,与水平井系统(42%OOIP)相比,智能水平井系统的使用将最终石油采收率提高到OOIP的49%。

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