基于生产井原油流量分析的IND-1000型电潜泵模型评价研究

Isnani Agriandita, Abdul Kamid, Reza Luthfi Atha Wijaya
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引用次数: 0

摘要

ESP是一种采用离心泵原理的人工举升装置,通过进气口进入的生产流体将被叶轮抛入扩散器,扩散器将被引导到其上方的叶轮,这样重复这个过程,直到生产流体到达地面。生产井开采时间越长,压力越小或减弱,因此需要进行评价,以获得最佳产量。所需数据包括:油井产量(Qo)、井流压力(Pwf)、泵入压力(PIP)、总动态扬程(TDH)、泵类型(IND-1000)、级数、电机类型、高压电机、电机电压、电流、电机外径、总电压和总启动电压。使用的评估方法是通过vogel法、泵入口压力(PIP)、总动态水头(TDH)、级数和马力(HHP)的IPR计算来确定最佳产量。根据评价结果,得到了最佳产量(Qopt)值为988.552 BPD。该最佳产量值仍然包括在600-1260 BFPD之间的产能范围内。由于最佳产量仍在产能范围内,因此该生产井不需要更换新泵。
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Evaluation Study of Electric Submersible Pump (ESP) IND-1000 Pump Model with Analysis of the Flow Rate of Crude Oil in Production Well
ESP is an artificial lift with the principle of a centrifugal pump, where the production fluid that enters through the intake will be thrown by the impeller into the diffuser which will then be directed to the impeller above it so that this process repeats until the production fluid reaches the surface. The longer the production well is produced, the smaller or weakened the Pwf pressure will be, therefore an evaluation is needed in order to produce optimal production. The data needed include: well production rate (Qo), well flow pressure (Pwf), Pump Intake Pressure (PIP), Total Dynamic Head (TDH), Pump type, namely IND-1000 pump, Number of stages, Type of motor, HP motor, motor voltage, Electric current, OD motor, Total voltage, and Total starting voltage. The evaluation methodology used is to determine the optimum production rate through IPR calculations using the vogel method, Pump Intake Pressure (PIP), Total Dynamic Head (TDH), number of stages, and horse power (HHP). From the results of this evaluation, the optimal production rate (Qopt) value was obtained, which was 988.552 BPD. This optimal production rate value is still included in the capacity range, which is between 600-1260 BFPD. Because the optimal production rate is still within the range capacity, this production well does not require a new pump replacement.
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