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Numerical Simulation Study on Law of Steam Flooding Effect under the Conditions of Different Oil Viscosity Values in the Low Permeability Oilfield

机译:低渗透油田不同油黏度条件下蒸汽驱效果规律数值模拟研究

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According to the dynamic and static data of the test area using steam flooding of Chao 119-52 well block in Chaoyanggou Oilfield, the geological model is established using Petrel software, and then numerical simulation is carried on using the STARS module of CMG software. The main research is about the law of steam flooding effect when the field is developed through steam flooding with the oil viscosity being 1mPa•s, 2mPa•s, 5mPa•s, 8mPa•s, 10mPa•s, 15mPa•s, 20mPa•s, 30mPa•s, 50mPa•s and 100mPa•s respectively, the ten kinds of schemes under the reservior condition, and then compare it with conventional water flooding development. The results show that the recovery of conventional water flooding is very sensitive to the formation oil viscosity and as the formation oil viscosity increases, the recovery of water flooding reduces sharply. All the results show that the minimum value of the oil viscosity turning to steam flooding development is selected as 10mPa•s for the low permeability reservior.
机译:根据朝阳沟油田潮汽水蒸汽洪水的测试区域的动态和静态数据,使用Petrel软件建立了地质模型,然后使用CMG软件的恒星模块进行了数值模拟。主要研究是关于蒸汽泛滥效应定律,当该领域通过蒸汽泛滥开发,油粘度为1MPa•S,2MPa•S,5MPa•S,8MPa•S,10MPa•S,15MPa•S,20MPa• S,30MPa•S,50MPa•S和100MPa•S分别在储蓄病变下的十种方案,然后将其与传统的水洪水开发进行比较。结果表明,常规水淹水的回收对地层油粘度非常敏感,随着地层油粘度的增加,水淹水的恢复急剧减少。所有结果表明,为低渗透储能,选择了汽油粘度转向蒸汽驱动开发的最小值。

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