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Power systems protection in an oil field distribution system

机译:油田配电系统中的电力系统保护

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Power systems protection for oil field distribution systems consists of protection for electrical submersible pump installations and their upstream electrical circuits. In this paper, a comprehensive protective device coordination and arc-flash hazard analysis is conducted for a large oil field distribution system. Various protection schemes are investigated and compared. This paper focuses on three areas: ESP installations protection using switchboards; protective device coordination of upstream electrical circuits of ESP wells; how to obtain the optimized protective device settings for both protection and arc-flash safety concerns. ESP installations protection using fuses is first addressed. ESP wells that cannot be protected by fuses are particularly investigated and a motor controller used with a fuse can provide a better protection for such ESP wells. A motor control center (MCC) for two large water injection pumps is used as a case study for the protective device coordination of upstream circuits of ESP wells. Nuisance tripping was experienced during a motor starting at the 1750HP water injection pump. The investigation indicates that improper relay settings at the MCC were the root cause. The optimized protective device settings caan be achieved by conducting a protective device coordination study and an arc-flash hazard analysis by keeping both protection and arc safety in mind.
机译:油田配电系统的电力系统保护包括潜水电泵装置及其上游电路的保护。在本文中,针对大型油田配电系统进行了全面的保护装置协调和弧闪危害分析。研究并比较了各种保护方案。本文着重于三个方面:使用配电盘进行ESP安装保护;电除尘器井上游电路的保护装置协调;如何获得针对保护和电弧闪光安全问题的最佳保护设备设置。首先介绍使用保险丝的ESP安装保护。特别研究了不能用保险丝保护的ESP井,与保险丝配合使用的电机控制器可以为此类ESP井提供更好的保护。一个用于两个大型注水泵的电机控制中心(MCC)被用作ESP井上游回路的保护装置协调的案例研究。在1750HP注水泵启动电动机的过程中,出现了令人讨厌的跳闸现象。调查表明,MCC上的继电器设置不正确是根本原因。通过同时注意保护和电弧安全性,进行保护设备协调研究和电弧闪危险分析,可以实现优化的保护设备设置。

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