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The Description of Oil Displacement Mechanism in Steam Injection of Multi-Field Synergy with Exergy Transfer

机译:多场协同有力传递的蒸汽注​​入中驱油机理的描述

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Steam injection is a most effective way for improving heavy oil recovery efficiency, and it has academic and practical significance for the mechanism of multi-field synergy oil displacement. Mechanism of “diversified” oil displacement which is obtained by traditional study methods in the exploitation territory of oil and gas fields has both respective roles and mutual cross shortages. To describe and analyze the displacement process of multi-field coupling with exergy transfer can simplify this kind of problem by introducing a unified goal-driving exergy. It needs to use the method of theoretical modeling, numerical simulation and experimental validation to study the basic law of exergy transfer in the oil displacement process of multi-field synergy, make a thorough research for the flooding process of steam injection with exergy transfer theory and reveal the oil displacement mechanism in steam injection of multi-field synergy. Thus the theory instruction and technical support can be provided to improve reservoirs producing degree and extraction ratio.
机译:注蒸汽是提高稠油采收率的最有效方法,对多场协同驱油机理具有理论和实践意义。传统研究方法在油气田开发领域获得的“多元化”驱油机理既有各自的作用,又有相互交叉的不足。通过引入统一的目标驱动能值来描述和分析多场耦合与能动传递的位移过程可以简化此类问题。需要运用理论建模,数值模拟和实验验证的方法,研究多场协同驱油过程中的能动传递基本规律,并用能动传递理论对注蒸汽驱过程进行深入研究。揭示了多场协同注蒸汽中的驱油机理。因此,可以为提高储层产量,提高采出率提供理论指导和技术支持。

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