Harmonics and Interharmonics of Top and Mudpump Variable Frequency Drives in Drilling Rigs

A. Nassif, Humud Said, D. Lang
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引用次数: 2

Abstract

Drilling rigs are large loads temporary in nature. Nowadays, drilling of a well can be done in the range of a few hours to a few weeks. Given the cost and complexity of building, mobilizing and operating, and space constraints, oil and gas companies rarely own their drilling rig and contract out specialized drillers. Their rigs often are operated for decades and contain rugged Variable Frequency Drives (VFDs), most times of six-pulse thyristor bridge topology or SCR-driven DC motors. The dynamics of the drives show steep ramp-up/ramp-down, rich harmonic content, and a wide power factor range. To make matters worse, drilling operation is often conducted in isolated, weak systems, leading to large background voltage distortion when grid-connected. This paper presents simulations and measurements of top-drive and mud-pump VFDs in a large drill rig operating in Alberta, Canada. It was observed that the VFDs draw currents very high in harmonic and interharmonic contents. To further investigate the true impact of these harmonic emissions, the paper also quantifies the harmonic Attenuation Effect of the VFDs, which can lead to harmonic content overestimated, if ignored. Due to the rich harmonic emissions, care must be taken to appropriately size the interconnection transformer when grid connected, and this is covered in the paper as well. As expected, these loads must be managed accordingly by the electric utility to avoid issues to nearby customers.
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钻机顶泵和泥泵变频传动的谐波和间谐波
钻井平台是临时性的大载荷。如今,钻一口井只需几小时到几周的时间。考虑到建造、动员和操作的成本和复杂性,以及空间的限制,石油和天然气公司很少拥有自己的钻井平台,并将专业的钻井人员外包出去。他们的钻机通常运行数十年,并包含坚固的变频驱动器(vfd),大多数是六脉冲晶闸管桥拓扑或scr驱动的直流电机。驱动器的动态表现出陡峭的上升/下降,丰富的谐波内容和宽的功率因数范围。更糟糕的是,钻井作业通常是在孤立的、薄弱的系统中进行的,这导致并网时的背景电压失真很大。本文介绍了在加拿大艾伯塔省的一个大型钻井平台上,顶驱和泥浆泵变频器的模拟和测量结果。观察到vfd的谐波和间谐波含量非常高。为了进一步研究这些谐波辐射的真正影响,本文还量化了vfd的谐波衰减效应,如果忽略它,可能导致谐波含量被高估。由于谐波发射丰富,在并网时必须注意适当的互连变压器尺寸,这在本文中也有涉及。正如预期的那样,电力公司必须对这些负荷进行相应的管理,以避免给附近的客户带来问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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