防止因钻机电压畸变引起的离心机故障

A. Hoevenaars, M. McGraw, K. Rittammer
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引用次数: 6

摘要

陆地和海上钻井平台上常用的交流和直流驱动器会产生极高的谐波失真。由于电压畸变经常超过20%,与钻井作业相关的设备可能会出现不稳定的操作和设备损坏。反复损坏一个或几个交流驱动器是常见的。艾伯塔省北部的一个陆地钻井平台的离心机设备每周都会出现故障。在一次对现场的访问中,发现离心机的驱动器发生了跳闸,导致离心机堵塞。在清理完离心机并恢复驱动器后,在钻井作业恢复后不久,它再次起跳。连接的电能质量分析仪显示,在钻井作业期间,电压失真程度极高。在电压波形中可见的深凹痕是泥浆泵直流驱动器中可控硅的结果。总谐波电压畸变(VTHD)达25%。在离心机设备前方安装串联无源滤波器,减少了电压陷波,降低了电压畸变。在最恶劣的钻井作业中,该过滤器将陷波深度减少了一半以上,并将离心机面板上的总电压畸变降低到< 0.09%。由于线侧电压失真水平保持在20%范围内,该滤波器被证明在消除所有离心机操作和过早故障问题方面非常有效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Preventing centrifuge failures due to voltage distortion on a Drilling Rig
AC and DC Drives commonly used on land and offshore Drilling Rigs produce extremely high levels of harmonic distortion. With voltage distortion often exceeding 20%, equipment associated with the drilling operation can experience erratic operation and equipment damage. Repeated damage to one or several AC Drives is common. One land Rig in Northern Alberta was experiencing failures with its centrifuge equipment on a weekly basis. During one visit to the site, a Drive in the centrifuge was found to have tripped off causing the centrifuge to plug up. After cleaning out the centrifuge and restoring the Drive, it tripped off again shortly after drilling operations resumed. A Power Quality Analyzer was connected which revealed extremely high levels of voltage distortion during drilling operations. Deep notches, visible in the voltage waveform, were found to be the result of SCR's in the mud pump DC Drives. Total harmonic voltage distortion (VTHD) reached 25%. A series connected passive filter was installed ahead of the centrifuge equipment to reduce the voltage notching and lower voltage distortion. The filter reduced notch depth by more than half and lowered overall voltage distortion at the centrifuge panel to <;9% during the most severe drilling operations. With line side voltage distortion levels remaining in the 20% range, the filter proved to be extremely effective in eliminating all centrifuge operational and premature failure issues.
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