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Study on the production law of heavy oil gravity‐drainage‐assisted steam flooding

机译:重油重力排水辅助蒸汽洪水生产规律研究

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Gravity‐drainage‐assisted steam flooding is a new technology to improve the recovery factor after deep penetration in deep super‐heavy oil reservoirs. This study is based on a model of the 60‐H25 test well group in Block 59 in Liaohe Oilfield, China. The numerical model uses the C programming language to analyze the influence of change in the bottom water height on the drainage effect and provides a theoretical basis for physical model experiments and field production. The physical model experiment uses similar principles to describe the production characteristics at different stages in a short cycle. We combine the numerical model and the physical model experiment to analyze the production rule of the Wa59 block over a long time period. The results show that the physical model experiment and the actual production of the block reflect the productivity change law of the well group, the degree of production, and the productivity relationship of the well group over short cycles and long periods, respectively. The comparison showed that the actual production was consistent with the production model of the physical model test, and the drainage effect was verified. The study of gravity‐drainage‐assisted steam flooding provides a reliable basis for the next stage of oilfield production.
机译:重力排水辅助蒸汽洪水是一种新技术,以改善深层超重油储层深度渗透后的恢复因素。本研究基于中国辽河油田街区60-H25考试井组的模型。数值模型使用C编程语言来分析底​​部水高度变化对排水效果的影响,为物理模型实验和现场生产提供了理论依据。物理模型实验使用类似的原理来描述在短循环中不同阶段的生产特性。我们将数值模型和物理模型实验组合在一段时间内分析WA59块的生产规则。结果表明,物理模型实验和块的实际生产反映了井组的生产率变化规律,分别在短周期和长期内井组的生产程度和生产力关系。比较表明,实际生产与物理模型试验的生产模型一致,验证了排水效果。重力排水辅助蒸汽洪水的研究为下一阶段提供了可靠的油田生产。

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