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Enhance Offshore Heavy Oil Recovery by Cyclic Steam-Gas-Chemical Co-stimulation

机译:通过循环蒸汽气化共同刺激提高海上重油回收

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There are abundant heavy oil resources in Bohai Offshore Oilfield. In past, only limited heavy oil reservoirs are recovered by cold production such as ESP, and uneconomic oil production(less than 30 m3/day in general) is obtained. Although conventional steam injection such as cycle steam stimulation is an effective onshore enhancing heavy oil recovery method, it is challenging to setup conventional steam generator on production platform for offshore heavy oil production. In consideration of the pothential of Thermal production for offshore heavy oil recovery, a portable and compact steam and flue gas generator is developed to employ cyclic steam-gas-chemical stimulation, and the whole injection system consists of gas generator, water treatment unit, fuel and chemical tanks, insulated surface pipe and tubing. Steam and flue gas are coinjected at the pressure up to 20MPa, content of flue gas is 13.1wt%-28.3wt%. The stimulation or EOR principles of cyclic steam- gas-chemical co-stimulation based on the synergetic effect of fluid injected include reduction in oil viscosity by heating and gas solution, enlargement of heat sweeping efficiency by coinjected gas, decrease in heat loss, expansion of heated porous rock and saturated fluid, improvement in fluid injectivity and sweep efficiency, and reservoir protection or injectivity enhancement and other favorable reaction by chemical additives such as foaming agent. Based on experiment and numerical simulation, the rational temperature of steam and gas coinjected is 300°C, and the volume ratio of gas to steam is about 0.3- 1.0 under barometric pressure depending on reservoir condition. In past two years, cyclic steam-gas-chemical co-stimulation are applied to five offshore heavy oil wells completed thermally or non-thermally with screen pipe, periodical steam injection is about 3000-5000 tons, and flue gas generated is injected together, chemical additives such as corrosion retarder injected alternatively, and a certain amount of nitrogen could be injected through annulus between tubing and casing to insulate tubing and vary injected fluid composition. As a result, up to 3 times of oil production rate in average compared to that of cold production is observed, and the peak oil production is more than 100 m3/day, and cyclic oil production increase is more than 5000 m3. In this paper, EOR principles, injection optimization, engineering design and field testing of cyclic steam-gas-chemical co-stimulation are introduced in detail.
机译:有渤海海上油田丰富的重油资源。在过去,只有有限的重油储层由冷生产如ESP,并获得不经济的产油(小于30立方米/天一般)回收。尽管常规的蒸汽注入,如循环蒸汽吞吐是一种有效的陆上提高重油回收方法,它是具有挑战性的设置传统的蒸汽发生器上生产平台用于海上的重油生产。考虑到热生产用于海上重油回收的pothential的,便携式和紧凑的蒸汽和烟气发生器被显影以采用循环蒸汽的气体化学刺激,并且在整个喷射系统由气体发生器中,水处理单元,燃料的和化学罐,绝缘表面和管材。蒸汽和烟气在压力高达20MPa的共注射,烟道气的含量为13.1wt%-28.3wt%。基于的流体喷射的协同作用的环状蒸汽气体化学共刺激的刺激或EOR原则包括通过加热和气体溶液在油的粘度降低,通过共注射气体,减少热损失,膨胀扩大的热效率扫通过化学添加剂如发泡剂加热多孔岩石和饱和流体,改善流体注入和驱扫效率,和储层保护或注入增强和其他有利的反应。基于实验和数值模拟,共注射蒸汽和气体的合理温度为300℃,而根据这取决于贮存条件气压气体的蒸汽的体积比为约0.3- 1.0。在过去的两年中,循环蒸汽 - 燃气 - 化学共刺激被应用到五个海上稠油热井已完成或非热与筛管,定期蒸汽喷射约3000-5000吨,产生的烟气一起注入,如腐蚀缓凝剂化学添加剂可选地注入,氮的特定量可以通过油管和套管进行绝缘管和注入而改变流体组合物之间环形空间被注入。其结果是,达到平均的石油生产速率3倍相比,冷的生产中观察到,峰值油产量超过100立方米/天,和环状的油产量增加是超过5000立方米。在本文中,EOR原理,注射优化,工程设计及循环蒸汽气体化学共刺激的现场测试进行了详细介绍。

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