首页> 外文会议>ASME International Conference on Ocean, Offshore and Arctic Engineering >MODAL IDENTIFICATION OF AN ELECTRICAL SUBMERSIBLE PUMP INSTALLED IN A TEST WELL USING DROP TESTS
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MODAL IDENTIFICATION OF AN ELECTRICAL SUBMERSIBLE PUMP INSTALLED IN A TEST WELL USING DROP TESTS

机译:使用滴测试安装在测试中的电气潜水泵的模态识别

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Electrical submersible pumps (ESPs) are used in the petroleum industry to pump large amount of fluids from subsea deep wells. Currently, ESPs are responsible for approximately 10% of the world's crude oil production. When high flow rates are required, gas lift and the ESP are the only available technologies that can be applied. ESP systems are much more complex and less reliable than the gas lift method, but they are more efficient and able to yield higher flow rates and pressure. ESPs are installed inside or near production wells, with the entire auxiliary infrastructure for power supply and control system. This means that maintenance is prohibitive because of production losses and the need for expensive and unavailable drill ships. Assembly errors and manufacturing defects must be avoided to make the method feasible and to prevent premature failure and, this goal, can only be achieved through rigorous quality control, operations procedure, qualification and dynamic tests. In this paper, modal parameters of an ESP installed in a test well were experimentally identified using the Enhanced Frequency Domain Decomposition (EFDD) technique. Drop tests were used to excite the ESP and vibration signals were acquired along the equipment's structure. Results were compared with modal parameters obtained using impact tests and showed that the drop test is an useful method for modal testing of ESP's in test well.
机译:电力潜水泵(ESP)用于石油工业,以泵浦来自海底井的大量流体。目前,ESPS负责全球大约10%的原油生产。当需要高流速时,气体升力和ESP是可以应用的唯一可用技术。 ESP系统比燃气升降方法更复杂,更可靠,但它们更有效,能够产生更高的流量和压力。 ESP安装在生产井内或附近,具有整个电源和控制系统的辅助基础架构。这意味着由于生产损失以及对昂贵和不可用的钻头的需求,维护是令人望而却步的。必须避免装配误差和制造缺陷,以使方法可行并防止过早失败,并且这种目标只能通过严格的质量控制,操作程序,资格和动态测试来实现。在本文中,使用增强的频域分解(EFDD)技术进行了实验识别测试井中安装的ESP的模态参数。丢弃试验用于激发ESP和沿设备结构获取的振动信号。将结果与使用冲击试验获得的模态参数进行了比较,并显示下降试验是尤其是ESP在测试中的模态测试的有用方法。

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