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The detailed calculation model of the friction between sucker rod and the liquid in the sucker rod pump lifting system of heavy oil

机译:高油吸盘杆泵提升系统吸盘杆与液体摩擦的详细计算模型

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Sucker rod pump lifting technology development is currently the most widely used, the most mature, the most complete supporting facilities. In the sucker rod pump lifting system of heavy oil, the larger of sucker rod and the friction liquid is one of the important factors that affect the lifting system. The friction between sucker rod and the liquid is needed to be accurately calculated in the scientific design of rod string matching. In this paper, friction between sucker rod and the liquid is the research object. The practical problems for the properties of the heavy oil which is changed with the temperature abnormally higher than the conventional crude oil. Temperature and pressure in the wellbore which effect on the viscosity of heavy oil is further researched. The calculation model of the wellbore temperature field and pressure field distribution is established. Furthermore, we put forward a set of suitable calculation model of the friction between sucker rod and the liquid in the sucker rod pump lifting system for heavy oil. At the same time, Using visual c # language programme computing software is compiled and generates the heavy oil viscosity curve which changed with various factors. On the basis of the work performed, the data of more than 500 Wells is calculated successfully. The results show that model prediction accuracy is higher than the normal model (Relative errors are less than 8%).
机译:吸盘杆泵提升技术开发目前是最广泛使用的,最成熟,最完整的配套设施。在浮油的吸盘杆泵提升系统中,吸盘杆和摩擦液的较大型是影响提升系统的重要因素之一。需要在杆串匹配的科学设计中准确计算吸盘杆和液体之间的摩擦。在本文中,吸盘杆和液体之间的摩擦是研究对象。用异常高于传统原油的温度改变重油性质的实际问题。进一步研究了对重油粘度影响的井筒中的温度和压力。建立了井筒温度场和压力场分布的计算模型。此外,我们提出了一组适当的摩擦摩擦摩擦的计算模型,以及用于重油的吸盘杆泵提升系统中的吸盘杆和液体之间的摩擦。同时,使用Visual C#语言程序计算软件并产生具有各种因素的重油粘度曲线。在执行的工作的基础上,成功计算了500多个井的数据。结果表明,模型预测精度高于正常模型(相对误差小于8%)。

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