Petroleum Science >2024, Issue2: - DOI: https://doi.org/10.1016/j.petsci.2023.09.018
Analysis and experimental study on resistance-increasing behavior of composite high efficiency autonomous inflow control device Open Access
文章信息
作者:Liang-Liang Dong, Yu-Lin Zhang
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引用方式:Liang-Liang Dong, Yu-Lin Zhang, Analysis and experimental study on resistance-increasing behavior of composite high efficiency autonomous inflow control device, Petroleum Science, Volume 21, Issue 2, 2024, Pages 1290-1304, https://doi.org/10.1016/j.petsci.2023.09.018.
文章摘要
Abstract: Bottom water coning is the main reason to reduce the recovery of horizontal bottom water reservoir. By water coning, we mean the oil-water interface changes from a horizontal state to a mound-shaped cone and breaks through to the wellbore. Autonomous inflow control device (AICD) is an important instrument maintain normal production after bottom water coning, however, the resistance increasing ability of the swirl type AICD is insufficient at present, which seriously affects the water control effect. Aiming this problem, this paper designs a multi-stage resistance-increasing and composite type AICD. The separation mechanism of oil-water two phases in this structure, the resistance form of oil-water single phase and the resistance-increasing principle of water phase are analyzed. Establishing the dual-phase multi-stage separation and resistance-increasing model, and verified by measuring the throttling pressure drop and oil-water volume fraction of the AICD, it is found that the composite type AICD has the effect of ICD and AICD at the same time, which can balance the production rate of each well section at the initial stage of production, delay the occurrence of bottom water coning. In the middle and later stages of production, water-blocking can be effectively increased to achieve water control and stable production. After structural sensitivity analysis, the influence law of various structural parameters on the water control performance of composite AICD was obtained. The simulation calculation results show that, compared with the existing swirl type AICD, composite AICD has higher sensitivity to moisture content, the water phase throttling pressure drop is increased by 4.5 times on average. The composite AICD is suitable for the entire stage of horizontal well production.
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Keywords: Water control; Flow separation; Flow resistance-increasing; AICD device; Simulation and experiment