STUDY OF THE PERFORMANCE OF THE DYNAMIC LEVEL STABILIZATION SYSTEM OPERATION IN THE WELLBORE EQUIPPED WITH AN ELECTRICAL SUBMERSIBLE PUMP UNIT

A. Totanov, V. Molchanova, K. Urazakov
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Abstract

Link for citation: Totanov A.S., Molchanova V.A., Urazakov K.R. Study of the performance of the dynamic level stabilization system operation in the wellbore equipped with an electrical submersible pump unit. Bulletin of the Tomsk Polytechnic University. Geo Аssets Engineering, 2023, vol. 334, no. 8, рр. 210-219. In Rus. The relevance of the study is related to the widespread use of electrical submersible pump units in the production of low-viscosity oils and water-gas-oil emulsions at this stage of development of mechanized production. However, the current production conditions associated with changing reservoir parameters bring to the fore a number of technical problems that need to be solved. One of these challenges is the phenomenon in which the dynamic level of the well decreases due to changes in reservoir parameters (reservoir pressure, productivity factor, etc.). Decrease of dynamic liquid level in the well leads to complications during operation of electrical submersible pump units. As a consequence, the increased cavitation in impellers is possible due to pressure reduction on the pump intake, and also full pump supply failure is not excluded at significant reduction of the dynamic level of the borehole fluid. In this relation, a technical solution, consisting in installation of bypass device (electrical valve) above the place of suspension of electrical submersible pump plant to maintain stable dynamic liquid level in the well and avoid complications during pump operation, was suggested. To confirm the feasibility of the dynamic level stabilization system, a mathematical model was developed to evaluate the effectiveness of complication prevention with the help of the proposed technical solution during the operation of the electric centrifugal pump unit. The main aim of the research is to develop a calculation method for studying the dynamics of the dynamic level stabilization system. Objects: an electrical submersible pump unit in conjunction with a system for stabilizing the dynamic level of the well. The influence of the diameter and length of the electrical valve on the efficiency of the dynamic level recovery was studied, taking into account hydraulic losses during the system operation. Methods. The research method is reduced to numerical solution of differential, linear and non-linear equations describing flow and pressure at electrical submersible pump unit outlet in steady-state mode, fluid flow through the electrical valve taking into account hydraulic resistances, flow of hydrodynamic processes in annular space during stabilization system operation, that is change of fluid level above the pump depending on borehole conditions and design parameters of electric valve. Results. Effect of parameters of the bypass valve – the diameter of flow section and length on dynamics of change of a liquid level above the pump, as well as the impact of liquid properties, namely its viscosity on intensity of restoration of a liquid level above the pump was studied. It was found that when the diameter of the electrical valve is increased, more intensive restoration of the liquid level above the pump is observed due to the reduction of hydraulic resistance in the valve cavity. Similarly, it was found that with increase of electrical valve length, as well as with increase of viscosity of liquid, coefficient of flow and intensity of liquid level recovery above the pump decreases respectively.
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研究了配备电潜泵装置的动态液位稳定系统在井筒作业中的性能
引用链接:Totanov a.s., Molchanova v.a., Urazakov K.R.配备电潜泵装置的动态液位稳定系统在井筒中的性能研究。托木斯克理工大学公报。岩土工程Аssets, 2023,第334卷,第2期。8日,рр。210 - 219。俄文。该研究的相关性与在机械化生产发展阶段广泛使用电潜泵装置生产低粘度油和水-气-油乳剂有关。然而,随着储层参数的变化,当前的生产状况带来了许多需要解决的技术问题。其中一个挑战是,由于储层参数(储层压力、产能系数等)的变化,井的动态液位会下降。井内动态液位的降低导致了电潜泵机组运行的复杂性。因此,由于泵入口压力降低,叶轮内的空化现象增加是可能的,而且在井内流体动态水平显著降低的情况下,也不排除泵完全供应故障的可能性。为此,提出了在电潜泵装置悬浮处上方加装旁通装置(电动阀)的技术解决方案,以保持井内动态液位稳定,避免水泵运行时出现并发症。为了验证动态液位稳定系统的可行性,建立了一个数学模型来评估该技术方案在电动离心泵机组运行过程中预防并发症的有效性。本研究的主要目的是为研究动态液位稳定系统的动力学提供一种计算方法。目标:一个电动潜水泵单元与一个稳定井动态水位的系统相结合。在考虑系统运行过程中液压损失的情况下,研究了电动阀阀径和阀长对动态液位回收效率的影响。方法。将研究方法简化为描述电潜泵机组出口稳态流量和压力的微分方程、线性方程和非线性方程的数值解,考虑水力阻力的电动阀内流体流动,稳定系统运行时环空流体动力过程的流动,即泵上液位随井眼条件和电动阀设计参数的变化。结果。研究了旁通阀参数——流段直径和长度对泵上液位变化动力学的影响,以及液体性质(即液体粘度)对泵上液位恢复强度的影响。研究发现,当电动阀的通径增大时,由于阀腔内的液压阻力减小,泵上方的液位恢复更加强烈。同样,随着电动阀长度的增加和液体粘度的增加,泵上方的流量系数和液位恢复强度分别减小。
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来源期刊
CiteScore
1.40
自引率
50.00%
发文量
210
审稿时长
5 weeks
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