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萨中油田油水同层开发界限研究 被引量:5
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作者 刘永建 胡忠益 管宪莉 《特种油气藏》 CAS CSCD 2010年第2期63-65,共3页
对萨中油田油水同层段密闭取心岩样的含水饱和度进行分析。结果表明:油水同层段的含水饱和度随海拔深度增加而增加;在分流方程式基础上,得到不同海拔深度和产水率变化关系曲线;利用措施临界产油量模型得到不同产水率下的补孔临界产油量... 对萨中油田油水同层段密闭取心岩样的含水饱和度进行分析。结果表明:油水同层段的含水饱和度随海拔深度增加而增加;在分流方程式基础上,得到不同海拔深度和产水率变化关系曲线;利用措施临界产油量模型得到不同产水率下的补孔临界产油量;结合数值模拟方法得到油水同层段的合理补孔海拔深度界限为-1065.0m。该研究为萨中油田增储挖潜提供了方向,为同类油田油水同层开发提供了理论指导。 展开更多
关键词 油水同层 开发界限 数值模拟 萨中油田
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Experimental Study on Heavy Oil Drag Reduction in Horizontal Pipelines by Water Annular Conveying
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作者 Mingjun Du Jiaqiang Jing +3 位作者 Xinqiang Xiong Bingbing Lang Xuan Wang Shiying Shi 《Fluid Dynamics & Materials Processing》 EI 2022年第1期81-91,共11页
Transportation of heavy oil by the so-called water-ring technique is a very promising method by which pressure drop and pollution can be significantly reduced.Dedicated experiments have been carried out by changing th... Transportation of heavy oil by the so-called water-ring technique is a very promising method by which pressure drop and pollution can be significantly reduced.Dedicated experiments have been carried out by changing the phase’s density,viscosity,velocity and interfacial tension to systematically analyze the characteristics of the water ring.On the basis of such experimental data,a mathematical model for pressure drop prediction has been introduced.This research shows that as long as the density of oil and water remains the same,a concentric water ring can effectively be formed.In such conditions,the oil-water viscosity difference has little effect on the shape of water ring,and it only affects the pressure drop.The greater the viscosity of heavy oil,the smaller the pressure drop of the oil-water ring transportation system.The influence of phases’interfacial tension on the characteristics and pressure drop of the heavy oil-water ring can be considered negligible.The pressure drop prediction model introduced on the basis of the Buckingham’s principle provides values in good agreement(95%)with the experimental data. 展开更多
关键词 Heavy oil oil-water ring boundary layer experiment pressure drop model
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