Novel Approach of Sucker Rod Pump Unit Balance Determination and Monitoring

Yuzar Aryadi, Azis Hidayat, H. Lazuardi, S. Isnanto, Bonni Ariwibowo, A. Muklas, Ahmad Fathurachman, Ghalib Bima Gema Ramadhan, M. Kamil
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引用次数: 1

Abstract

SCADA optimization platform is implemented to monitor and evaluate well performance. For Sucker Rod Pump, SCADA Optimization Software can be used to monitor the unit balance and gearbox torque. In some ways, not all required well configuration data for SCADA Optimization Software to do a calculation of counterbalance torque (CBT) for pumping unit balance and gearbox torque evaluation are available. Standard field Counterbalance Effect (CBE) measurement might be performed to calculate the CBT value. However, this standard procedure is limited to well that run on balance condition. For well with unbalance condition, the measured CBE needs to be adjusted by a correction factor which the equation will be presented in this paper. The corrected CBE value from the new equation is then inputted to the SCADA Optimization software to perform day-to-day real-time monitoring of pumping unit balance and gearbox torque. Derivation of the CBE correction factor equation is presented. Validation upon this new equation is performed by comparing the result with electrical measurement on the pumping unit motor. Using the calculated CBT from the new equation, SCADA Optimization Software performs gearbox torque and pumping unit balance analysis based on every collected dynamometer card. Calculated CBT from the new equation provided results in gearbox torque distribution pattern that match with measured electrical parameter distribution along the stroke. This CBT value assists SCADA optimization software to calculate pumping unit balance and gearbox torque. Alarm in the SCADA optimization software that coming from an anomaly on pumping unit balance and gearbox torque help operator to do preventive maintenance so that pumping unit component especially the gearbox could have longer run life.
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有杆泵机组平衡检测与监测新方法
采用SCADA优化平台监测和评价井况。对于有杆泵,SCADA优化软件可用于监测机组平衡和齿轮箱扭矩。在某些方面,SCADA优化软件进行平衡扭矩(CBT)计算、评估抽油机平衡和变速箱扭矩时,并非所有所需的井配置数据都可用。可以通过标准场平衡效应(CBE)测量来计算CBT值。然而,该标准程序仅限于在平衡状态下运行的井。对于处于不平衡状态的井,需要对测量的CBE进行修正系数的调整,本文将给出修正系数的公式。然后,将新公式修正后的CBE值输入到SCADA优化软件中,对抽油机平衡和变速箱扭矩进行日常实时监测。给出了CBE修正系数方程的推导。通过与抽油机电机电测量结果的比较,对新方程进行了验证。根据新公式计算出的CBT, SCADA优化软件根据收集到的每个测功机卡执行变速箱扭矩和抽油机平衡分析。根据新方程计算的CBT给出了与实测电学参数沿行程分布相匹配的齿轮箱转矩分布模式。该CBT值有助于SCADA优化软件计算抽油机平衡和变速箱扭矩。SCADA优化软件中出现的抽油机平衡和齿轮箱扭矩异常报警,有助于作业人员进行预防性维护,从而延长抽油机部件,尤其是齿轮箱的使用寿命。
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