用有限元模拟分析钢丝绳替代抽油杆的性能

Fazeli Tehrani Fatemeh, Langbauer Clemens, H. Herbert
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引用次数: 1

摘要

本文选择一种最先进的钢丝绳作为抽油杆管柱进行适用性研究。利用Abaqus进行有限元模拟,详细分析了绳索的性能和可能发生的故障以及其长度。抽油杆管柱是有杆泵的关键部件,将地面抛光抽油杆的往复运动传递给井下泵柱塞。然而,它暴露在剧烈的循环载荷下,会导致钻杆损坏、接箍断裂以及耗时的修井作业等并发症。因此,像钢丝绳这样的连续绳可以方便地替代传统设计。引入的钢丝绳具有高抗拉强度、抗蠕变和抗疲劳性能,同时其均匀的设计消除了连接失败的可能性。该钢丝绳被设计成与抽油杆抗屈曲泵(SRABS)串联工作,以促进其运动。然后结合MATLAB和Python代码对该系统的性能进行了仿真,并在Abaqus的界面中进行了可视化。这些模拟结果证实,这种钢丝绳确实可以替代有杆抽油机中的抽油杆管柱。详细的应力、载荷和运动剖面也被编译,以便进行全面的分析。结果表明,使用钢丝绳进行泵送的产能与使用传统抽油杆的系统一样高,甚至超过了该系统的产能。他们指出,这种设计的效率在很大程度上取决于井的几何形状和深度、泵的类型和尺寸、产出流体的可压缩性和管柱材料的弹性。通过使用兼容的Pumpjacks和合适的井下设备(如管柱保护器),在最佳泵速下一起工作,可以实现钢丝绳性能的优化。本文对两口参考井的常规抽油杆柱和钢丝绳的性能进行了值得注意的比较。正在计划进行实验室和现场试验,以调查该绳索的全部承载能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Behavior Analysis of a Wire Rope Replacing Sucker Rods with Finite Element Simulation
In this paper, a state-of-the-art wire rope is chosen for investigation regarding its applicability as a sucker rod string. Finite element simulation with Abaqus has been used for a detailed analysis of the rope's performance and possible failures along with its length. The sucker rod string is a key component of sucker rod pumps, transferring the reciprocating movement of the surface polished rod to the downhole pump plunger. It is, however, exposed to severe cyclic loads, causing several complications from damaged rods and broken couplings to time-consuming workover procedures. Hence, continuous strings like wire ropes can be a convenient replacement for the conventional design. The mechanical properties of the introduced wire rope demonstrate high tensile strength and great resistance against creep and fatigue while its uniform design eliminates the chances of connection failure. The proposed wire rope was designed to work in tandem with a sucker rod anti-buckling pump (SRABS) to facilitate its motion. The performance of this system was then simulated using a combination of MATLAB and Python codes, visualized in the interface of Abaqus. These simulations confirm that this wire rope can indeed replace the rod string in a sucker rod pumping unit. Detailed stress, load, and movement profiles were also compiled to allow for a comprehensive analysis. The results pointed out that pumping with a wire rope can be just as productive, or surpass the productivity of a system using conventional sucker rods. They indicate that the efficiency of this design highly depends on the geometry and depth of the well, type, and size of the pump, the compressibility of the produced fluid and string material elasticity. The optimization of the wire rope's performance could be achieved by using compatible Pumpjacks and proper downhole equipment, such as string protectors, all operating together under an optimum pumping speed. This paper presents a noteworthy comparison between the performance of a conventional rod string and a wire rope at two reference wells. Laboratory and field tests are being planned to investigate the full capacity of the rope.
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