Dynamics of pump jacks with theories and experiments

IF 2.6 Q3 ENERGY & FUELS Upstream Oil and Gas Technology Pub Date : 2023-09-01 DOI:10.1016/j.upstre.2023.100097
Sheldon Wang , Lynn Rowlan , Dennis Cook , Carson Conrady , Ross King , Carrie Anne Taylor
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Abstract

In this paper, we revisit the issues related to dynamics and mechanisms of the pump jack as a surface unit of the sucker rod pumping systems. In particular, we employ both the traditional study methods based on trigonometric relationships and current Newton-Raphson iteration based general solution techniques for the sets of nonlinear governing equations of angles within the four-bar linkages. The nonlinear computational methods enable the study of transient behaviors of pump jacks with non-uniform motor speeds and further analytical studies of the positions, velocities, and accelerations as well as the polish rod force and motor torque in comparison with the actual experimental measures documented in Echometer TAM software and other case studies. These current nonlinear approaches have paved a way for more in-depth studies of the entire downhole system as a specific viscoelastic dynamical system with respective stiffness and damping coefficients for individual wells. In this study, we also identify a common misunderstanding about the structural unbalance B as illustrated in API Specification 11E Page 47 which must be multiplied by the sine function of the polar angle of the Walking beam measured from its horizontal position. This key finding has been confirmed and validated with the comparison between results from both traditional and proposed nonlinear approaches and experimentally measured data collected by Echometer equipment and TAM software.

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泵千斤顶动力学的理论与实验
在这篇论文中,我们重新讨论了有杆泵抽油系统中作为表面单元的泵千斤顶的动力学和机理问题。特别是,我们对四杆机构内的非线性角度控制方程组采用了基于三角关系的传统研究方法和当前基于Newton-Raphson迭代的通用求解技术。非线性计算方法能够研究电机速度不均匀的泵千斤顶的瞬态行为,并与Echometer TAM软件和其他案例研究中记录的实际实验测量结果进行比较,进一步分析研究位置、速度和加速度以及抛光棒力和电机扭矩。目前的这些非线性方法为将整个井下系统作为一个特定的粘弹性动力系统进行更深入的研究铺平了道路,该系统具有各自的刚度和阻尼系数。在本研究中,我们还发现了API规范11E第47页中所示的关于结构不平衡B的常见误解,该不平衡必须乘以从其水平位置测量的步进梁极角的正弦函数。传统和提出的非线性方法的结果与Echometer设备和TAM软件收集的实验测量数据之间的比较证实了这一关键发现。
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