Energy-consumption calculation and optimization method of integrated system of injection-reservoir-production in high water-cut reservoir

Energy ◽  
2022 ◽  
Vol 239 ◽  
pp. 121961
Author(s):  
Yajie Bai ◽  
Jian Hou ◽  
Yongge Liu ◽  
Dong Zhao ◽  
Shaoxian Bing ◽  
...  
2013 ◽  
Vol 765-767 ◽  
pp. 295-299
Author(s):  
Meng Mei Lu ◽  
Jiao Zhu

The block within the jurisdiction of Zhao II oil transfer station in Daqing Oilfield is low permeability area. The wells are in condition of low liquid production, high water cut, low temperature environment and poor geological. So a high energy consumption of oil gathering is caused. In order to save the energy, the energy balance model of Zhao II oil transfer station gathering and transportation system was established. Combining with production data, the energy consumption proportion and the main problems were analyzed. And the corresponding optimization programs were proposed. The results showed that Zhao II oil transfer station was expected to conserve 48.97m3/h natural gas and 47.2kW·h/h electricity after optimization. Energy efficiency of station increased 1.32%.The energy-saving effect was significant.


2013 ◽  
Vol 734-737 ◽  
pp. 1484-1487 ◽  
Author(s):  
Chun Lin Nie ◽  
Shi Zhong Ma ◽  
Hong Kui Chen

With the oil field developing, the water cut increased, gradually and the efficiency of injection-production reduced year by year. Since the water flooding of Lamadian Oilfield entered extra high water cut period, the distribution of flow flied become more and more complex. The distribution of remaining oil and ineffective circulation is complex. The existing of ineffective circulation led to the flooding efficiency reducing sharply and cost of crude oil per ton by water flooding increased. In order to control production energy consumption in the extra high water cut, the method of improving the efficiency of Injection-production is studied in the Lamadian oilfield. Through the analysis of injection-production status, the factors that influence the injection efficiency is studied. The distribution of ineffective circulation which seriously affects the efficiency of Injection-production is made clearly. According to the factors that influence the efficiency of injection-production, based on flow field characteristics of water flooding, the countermeasure to enhance efficiency of injection-production is put forward in order to reduce the energy consumption and cost of producing crude oil.


2009 ◽  
Author(s):  
Daniel Daparo ◽  
Luis Soliz ◽  
Eduardo Roberto Perez ◽  
Carlos Iver Vidal Saravia ◽  
Philip Duke Nguyen ◽  
...  

Author(s):  
Jie Tan ◽  
Ying-xian Liu ◽  
Yan-lai Li ◽  
Chun-yan Liu ◽  
Song-ru Mou

AbstractX oilfield is a typical sandstone reservoir with big bottom water in the Bohai Sea. The viscosity of crude oil ranges from 30 to 425 cp. Single sand development with the horizontal well is adopted. At present, the water content is as high as 96%. The water cut of the production well is stable for a long time in the high water cut period. The recoverable reserves calculated by conventional methods have gradually increased, and even the partial recovery has exceeded the predicted recovery rate. This study carried out an oil displacement efficiency experiment under big water drive multiple to accurately understand an extensive bottom water reservoir's production law in an ultra-high water cut stage. It comprehensively used the scanning electron microscope date, casting thin section, oil displacement experiment, and production performance to analyze the change law of physical properties and relative permeability curve from the aspects of reservoir clay minerals, median particle size, pore distribution, and pore throat characteristics. Therefore, the development law of horizontal production wells in sandstone reservoirs with big bottom water is understood. It evaluates the ultimate recovery of sandstone reservoirs with big bottom water. It provides a fundamental theoretical basis and guidance for dynamic prediction and delicate potential tapping of sandstone reservoirs with big bottom water at a high water cut stage.


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