A oilfield was an oil reservoir with strong bottom water in offshore, the water cut was as high as 96%. In the high water cut stage, the most effective way of increasing oil production was to extract liquid and increa...A oilfield was an oil reservoir with strong bottom water in offshore, the water cut was as high as 96%. In the high water cut stage, the most effective way of increasing oil production was to extract liquid and increase oil. The processing capacity of oilfield fluid was limited by the conditions. By using Petrel-RE-2017 software, combining reservoir engineering and percolation mechanics methods, this paper analyzes the effect of large-scale liquid pumping, expand coverage and shut-in coning in oil reservoirs with bottom water, and formulates the adjustment strategy of single well production structure of the whole oilfield. It was confirmed that large-scale liquid production can expand coverage and shutting down well can reduce water cut. It can provide reference and guidance for oil field with strong bottom water when it encounters bottleneck of liquid treatment capacity.展开更多
采用现场数据调研、宏观分析、金相分析、扫描电镜分析和XRD分析等方法,对某油田Φ73.02mm×5.51 mm P110油管腐蚀原因进行分析。分析认为:油管腐蚀的主要原因是该井高含量的CO_2、Cl^-、地层水、返排酸化压裂液共存造成的腐蚀,腐...采用现场数据调研、宏观分析、金相分析、扫描电镜分析和XRD分析等方法,对某油田Φ73.02mm×5.51 mm P110油管腐蚀原因进行分析。分析认为:油管腐蚀的主要原因是该井高含量的CO_2、Cl^-、地层水、返排酸化压裂液共存造成的腐蚀,腐蚀程度与气液交界面的位置及井段温度有关。推荐使用耐CO_2腐蚀的油套管产品。展开更多
文摘A oilfield was an oil reservoir with strong bottom water in offshore, the water cut was as high as 96%. In the high water cut stage, the most effective way of increasing oil production was to extract liquid and increase oil. The processing capacity of oilfield fluid was limited by the conditions. By using Petrel-RE-2017 software, combining reservoir engineering and percolation mechanics methods, this paper analyzes the effect of large-scale liquid pumping, expand coverage and shut-in coning in oil reservoirs with bottom water, and formulates the adjustment strategy of single well production structure of the whole oilfield. It was confirmed that large-scale liquid production can expand coverage and shutting down well can reduce water cut. It can provide reference and guidance for oil field with strong bottom water when it encounters bottleneck of liquid treatment capacity.
文摘采用现场数据调研、宏观分析、金相分析、扫描电镜分析和XRD分析等方法,对某油田Φ73.02mm×5.51 mm P110油管腐蚀原因进行分析。分析认为:油管腐蚀的主要原因是该井高含量的CO_2、Cl^-、地层水、返排酸化压裂液共存造成的腐蚀,腐蚀程度与气液交界面的位置及井段温度有关。推荐使用耐CO_2腐蚀的油套管产品。