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Preliminary Study of In-Situ Combustion in Heavy Oil Field in The North of Thailand

机译:泰国北部重油场原位燃烧的初步研究

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A small oil field in the north of Thailand has medium viscous and low gas-content heavy oil. Since conventional production methods are ineffective, thermal recovery is potentially suitable to enhance oil recovery for this reservoir. In-situ combustion is a complex EOR process used for medium to heavy crude oils. The process involves the multi-phase fluid flow through porous media with chemical and physical transition of the crude oil components under high temperature and pressure conditions. The simulation results with STARS were investigated by conducting a number of sensitivity studies with varying the parameters like gridblock sizes, air-injection rates, oxygen concentrations, and injected air temperature. The 0.5m-block size was chosen due to the optimum running time with acceptable accuracy. From the results, it can be concluded that changing injection rate from 100 Mscf/d to 400 Mscf/d does not significantly affect cumulative oil -production - less than 6% incremental recovery. Increase oxygen concentration from 29% to 100% shows an increase in 40.67% oil production. Moreover, if the injected fluid temperature is increased from 80°F to 500°F, total oil production increases 97.14%. Furthermore, optimal operating conditions to enhance recovery of oil were also studied.
机译:泰国北部的一个小油田具有中型粘稠和低气含量重油。由于常规的生产方法无效,因此热回收可能适合于增强该储层的吸收。原位燃烧是一种复杂的EOR工艺,用于中至重型原油。该方法涉及多相流体通过多孔介质在高温和压力条件下具有粗油组分的化学和物理转变。通过进行多种敏感性研究来研究具有恒星的模拟结果,该研究具有改变像钢块尺寸,空气喷射率,氧浓度和注入的空气温度等参数。由于具有可接受精度的最佳运行时间,选择了0.5米块尺寸。从结果中,可以得出结论,从100MSCF / D的注射率改变为400 mSCF / D不会显着影响累积油 - 产量低于6%的增量恢复。将氧浓度增加到19%至100%显示出40.67%的油生产增加。另外,如果注入的流体温度从80°F增加至500°F,则总油产量增加97.14%。此外,还研究了提高油恢复的最佳操作条件。

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