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Techniques to improve MV cascaded H bridge inverter (CHBI) VFDs availability applied to drive high power esp oil wells

机译:改善中压级联H桥逆变器(CHBI)VFD可用性的技术,用于驱动大功率esp油井

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Artificial Lift systems are routinely employed in the petroleum industry in order to provide the energy needed for the fluid to be transferred from the reservoir to the surface. The ESP system is a method of artificial lift widely used in recovery, often applied in mature fields or fields with heavy oil (low API gravity), as well as high flow rate wells. The energy for ESP systems is supplied by a submerged motor pump set, often driven by a medium voltage adjustable speed drive on the surface. Electrical systems present in oil production units generally depend on redundancy of electrical equipment, primarily related to operational and production safety, in order to increase system reliability. However, in the case of offshore ESP systems, the power to each well is dependent on the operation of a dedicated frequency converter, and redundancy is practically impossible due to the dimensions of the equipment located on the production platforms. Due to the high cost of interventions for replacement of the ESP equipment, the system requires the maximum availability possible. The reliability of applied frequency converters for ESP drives becomes essentially important to the operation of this system. A failure in the converter translates directly into lost production from that well, as well as high intervention costs. The objective of this paper is to analyze the availability and reliability of frequency converters used in medium voltage multilevel CHDI drive topology for ESPs. A method to improve availability of MV frequency drives using the implementation of technical resources, focusing on increased system availability over the entire useful life of the ESP, is proposed. This will enable achievement of lower production losses and a better economic return on investment.
机译:在石油工业中通常使用人工举升系统,以提供将流体从储层转移到地面所需的能量。 ESP系统是一种广泛用于采油的人工举升方法,通常用于成熟油田或重油(API重力低)油田以及高流量井。 ESP系统的能量由潜水泵组提供,通常由表面上的中压可调速驱动器驱动。石油生产单元中存在的电气系统通常取决于电气设备的冗余,主要与操作和生产安全有关,以提高系统的可靠性。但是,在海上ESP系统的情况下,每口井的功率取决于专用变频器的操作,并且由于位于生产平台上的设备的尺寸,冗余实际上是不可能的。由于更换ESP设备的干预成本很高,因此系统需要最大的可用性。用于ESP驱动器的变频器的可靠性对于该系统的运行至关重要。转炉的故障直接转化为该油井的生产损失以及高昂的干预成本。本文的目的是分析用于ESP的中压多级CHDI驱动拓扑中使用的变频器的可用性和可靠性。提出了一种使用技术资源来提高中压变频器的可用性的方法,重点是在ESP的整个使用寿命内提高系统的可用性。这将实现更低的生产损失和更好的投资经济回报。

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