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Innovative Approach to Optimize ESP Power Consumption through Developed Software

机译:通过开发软件优化ESP功耗的创新方法

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Maintaining oil production while both water cut and reservoir pressure are changing with time is a challenging task especially for fields equipped with artificial lift systems such as Electrical Submersible Pump (ESP). ESPs have a defined recommended operating range (ROR) that can reduce the flexibility of the system therefore a variable speed drive (VSD) unit is being used to extend the ROR. A surface choke is also another option to adjust the flow rates and control the ESP to operate within its recommended range. However, inefficient use of both options can be detrimental on the life cycle of the production system. High VSD Frequency will increase the motor speed which leads to increased power consumption. Low choke setting causes high hydraulic losses across the choke that can lead to wastes of energy. In oil fields equipped with ESPs, power consumption as well as ESP run life play a significant role in specifying the operation cost and economical life of the field. Therefore, it’s essential to optimize the operation conditions of the ESP to optimize the operation conditions of the ESP through minimizing power consumption while maintaining a production rate that fall within the pumps ROR. Utilizing a technique that can quickly provide the best choke and frequency setting is a key to achieving more optimized operation in a dynamic field. This paper will discuss an in-house developed application that can calculate the minimum ESP motor operating frequency and the optimum choke setting point required to maintain the production rate at the minimum power consumption and lower motor speed. With the availability of real-time data from the surface and down-hole equipment, the optimization process was automated by collecting data and modeling surface equipment and ESP. this application is being used to optimize an entire field and the pilot test showed very promising results. A substantial 2000 KVA, which is equivalent to 1600 KWh, was saved by adjusting only 57 wells.
机译:维持石油生产,同时随着时间的推移而变化,既有水切割和水库压力都是一个具有挑战性的任务,特别是对于配备有人工升降系统(例如电气潜水泵(ESP)的领域。 ESPS具有定义的推荐操作范围(ROR),可以降低系统的灵活性,因此可以使用变速驱动器(VSD)单元来扩展ROR。表面扼流圈也是另一种选择,可以调整流速并控制ESP在其推荐范围内运行。然而,两种选择的低效使用可能对生产系统的生命周期有害。高VSD频率会增加电机速度,导致功耗增加。低扼流装置导致扼流圈的高液压损耗,从而导致能量浪费。在配备ESP的油田,功耗以及ESP运行寿命在指定现场运营成本和经济寿命方面发挥了重要作用。因此,对于优化ESP的操作条件是必要的,以通过最小化功耗来优化ESP的操作条件,同时保持泵ROR内部的生产率。利用可以快速提供最佳扼流圈和频率设置的技术是在动态字段中实现更优化操作的关键。本文将讨论内部开发的应用,可以计算最小的ESP电机工作频率和在最小功耗下保持生产率和降低电机速度所需的最佳扼流设定点。通过从表面和下孔设备的实时数据的可用性,优化过程通过收集数据和建模表面设备和ESP进行自动化。该应用程序用于优化整个字段,试点测试显示出非常有前途的结果。通过仅调整57个井来节省大量的2000 kVA,相当于1600千瓦时。

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