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Visualization Technology Research and Application in Partial-Wear Between the Sucker Rod and Tube of Pumping Unit

机译:抽油机抽油杆与油管局部磨损的可视化技术研究与应用。

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Due to the serious partial-wear of rods and tubes and a lack of visual simulation system in the oil field, we design a visualization simulation system for the partial-wear of pumping well rods and tubes. The static visualization simulation of well trajectories and tubes, and the dynamic visualization simulation of the sucker rods motion states and the contact state of tubes and rods are realized. The method of reversely seeking the control polygon vertex of cubic B-spline curve is used in the well trajectory curve reconstruction. The method of combining circle division is proposed to solve the problem of translucent and semi-section display of tube with arbitrary 3D well trajectory as the axis. The visualization simulation of the dynamic deformation of sucker rods and the contact state between tubes and rods are realized by combining the real time partial-wear points and the well trajectory data points. The field tests show that the system can identify the position and state of tubes and rods' eccentric-wear clearly, which provides basis for diagnosis and treatment.
机译:由于杆和管的严重局部磨损以及油田缺乏可视化仿真系统,我们设计了可视化仿真系统,用于抽油井杆和管的局部磨损。实现了井眼轨迹和管的静态可视化仿真,以及抽油杆运动状态和管与杆接触状态的动态可视化仿真。反演三次B样条曲线的控制多边形顶点的方法被用于井眼轨迹曲线的重建。为了解决以任意3D井眼轨迹为轴的管子的半透明和半截面显示的问题,提出了组合圆分割的方法。通过结合实时局部磨损点和井眼轨迹数据点,实现了抽油杆动态变形和管与杆之间接触状态的可视化模拟。现场测试表明,该系统可以清楚地识别出管件和杆件的偏心磨损的位置和状态,为诊断和处理提供依据。

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