Modeling the Effect of Transient Viscous Forces on Sucker Rod Pump Performance and Run Lift

A. Aql, E. Al-Safran
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Abstract

The sucker rod pump is commonly used to lift heavy oil wells under thermal production to maximize the flow rate due to its high efficiency and reliability. However, rod fatigue and possible failure are commonly encountered when rod design does not incorporate the appropriate loads, especially in high-viscosity conditions. Although the existing commercial design tools solve the wave equation to predict rod string life, they do not incorporate the effect of liquid viscosity, resulting in prediction discrepancy and inappropriate rod design and pump operation. The aim of this study is to propose a theoretical model to investigate the effect of the transient frictional forces acting on sucker rod pump subsurface components, i.e. rod and pump. Furthermore, a sensitivity analysis case study is carried out to investigate the effect of various flow and design parameters on the rod top-of-section stresses, rod buckling tendency, and fatigue life. This work provides a comprehensive understanding of the underlying interaction between fluid flow behavior and rod dynamics.
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模拟瞬态粘性力对抽油杆泵性能和运行扬程的影响
抽油杆泵因其高效率和高可靠性,常用于热生产重油井的举升,以最大限度地提高流量。然而,如果抽油杆设计没有考虑适当的载荷,特别是在高粘度条件下,抽油杆通常会出现疲劳并可能失效。虽然现有的商业设计工具通过求解波方程来预测杆串的寿命,但它们并没有考虑液体粘度的影响,从而导致预测不准确,杆设计和泵运行不恰当。本研究旨在提出一个理论模型,以研究作用于抽油杆泵地下部件(即杆和泵)的瞬态摩擦力的影响。此外,还进行了一项敏感性分析案例研究,以探讨各种流量和设计参数对杆截面顶部应力、杆屈曲趋势和疲劳寿命的影响。这项工作让我们全面了解了流体流动行为与杆动力学之间的潜在相互作用。
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