确定因素对淹水气井气举作业参数的影响

R. Kondrat, О. Kondrat, L. Khaidarova, N. Hedzyk
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引用次数: 0

摘要

气藏最后阶段的开发通常因生产井注水而变得复杂。随着地层产品中水的出现,由于储层饱和气厚度的减少以及液气混合物在井筒和流线中的移动过程中压力损失的增加,与单纯的气体移动相比,产气速率降低。井的运行逐渐变得不稳定,随着随后的自然流动停止而周期性地变化。介绍了淹水井的作业方法。在枯竭气田注水气井中采用气举法是合理的。研究了油管径、井口压力和水系数对淹水井气举作业参数的影响。研究采用作者提出的改进技术和PipeSim程序进行假设(模拟)井况。所进行的研究以图形的形式呈现,包括储层气体的产量、将液体从井底带到地面所需的最小产气量、举升气体流速和井底压力对井口压力、油管直径和水系数的依赖关系。研究结果表明,根据所提出的方法与PipeSim程序计算得到的加水井气举作业参数值吻合较好。利用研究结果,可以在不同的水系数和井口压力下选择最优的管柱直径,评估地层气流量和气举流量。
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The Influence of Determining Factors on the Parameters of Gas-lift Operation of Flooded Gas Wells
The development of gas deposits at the final stage is usually complicated by watering production wells. With the advent of water in the formation product, the gas production rate decreases due to the decrease in the gas-saturated thickness of the reservoirs and the increase in pressure loss during movement of the liquid-gas mixture in the wellbore and flow lines as compared to the movement of gas only. Well operation is gradually becoming unstable, periodic with the subsequent cessation of natural flowing. The methods of operation of flooded wells are characterized. The use of the gas-lift method for the operation of flooded gas wells in depleted gas fields is justified. The effect of tubing diameter, wellhead pressure and water factor on the parameters of gas-lift operation of flooded wells is investigated. The research is carried out using the improved technique proposed by the authors and the PipeSim program for hypothetical (simulated) well conditions. The studies performed are presented in the form of graphical dependences of the production rate of reservoir gas, the minimum required gas production rate for the liquid to be taken from the bottom of the well to the surface, lift gas flow rate and bottomhole pressure on wellhead pressure, diameter of tubing and water factor. The research results indicate a significant coincidence of the values ​​of the calculated parameters of the gas-lift operation of the watered well according to the proposed methods and the PipeSim program. Using the research results, it is possible to select the optimal diameter of the tubing string and evaluate the value of formation gas flow rate and gas-lift flow rates for various values ​​of water factor and wellhead pressure.
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