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Optimization of AICD water control completion technology for horizontal well in bottom water gas reservoir

机译:水平井AIDD水控制完成技术的优化

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At present, adaptive inflow control (AICD) water-controlled completion technology is mainly applied to reservoir water control. In view of the gas reservoir AICD water control completion technology research is still blank, this paper carried out a suitable for gas reservoir water control water control mechanism of the new type runner AICD and flow characteristics analysis, X oilfield bottom water reservoir is established new port type AICD water control completion. The structure parameter combination of the new AICD was analyzed and optimized by orthogonal test, and the water control effect of the new AICD water control completion was analyzed. The results show that compared with conventional perforation completions, the new AICD controlled water completions cause little bottom hole pressure loss and have little effect on condensate production. New type runner AICD completion can prolong the bottom water reservoir water control in low yielding water gas recovery period of about 365 days, predict 20 years of accumulated water rate reduced about 27%, water saturation near wellbore area is generally lower, has good effect of water control. The new flow channel type AICD controlled water completion can be applied to the development of bottom water gas reservoirs to control water and stabilize gas.
机译:目前,自适应流入控制(AICD)水控完成技术主要应用于水库水控制。鉴于气体水库AICD水控制完成技术研究仍然是空白的,本文进行了适用于燃气储层水控制水控制机制的新型赛道AICD和流动特性分析,X油田底部水库是建立新港口的新港口型AIDD水控制完成。通过正交试验分析和优化新AICD的结构参数组合,分析了新的AICD水控制完成的水控制效应。结果表明,与传统穿孔完井相比,新的AICD受控水完井导致较少的底部孔压力损失,对冷凝水产生没有影响。新型Runner AICD完成可以延长低产水储层水控制的底部水库水库约365天,预测20年的累积水速率降低约27%,井筒区域附近的水饱和度均较低,具有良好的效果水控制。新的流动通道型AICD受控水完井可以应用于底部水储层的发展,以控制水和稳定气体。

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