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Analyzing Axial Stress and Deformation of Tubular for Steam Injection Process in Deviated Wells Based on the Varied (T P) Fields

机译:基于变化的(TP)场分析斜井注汽过程中的轴向应力和管状变形

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摘要

The axial stress and deformation of high temperature high pressure deviated gas wells are studied. A new model is multiple nonlinear equation systems by comprehensive consideration of axial load of tubular string, internal and external fluid pressure, normal pressure between the tubular and well wall, and friction and viscous friction of fluid flowing. The varied temperature and pressure fields were researched by the coupled differential equations concerning mass, momentum, and energy equations instead of traditional methods. The axial load, the normal pressure, the friction, and four deformation lengths of tubular string are got ten by means of the dimensionless iterative interpolation algorithm. The basic data of the X Well, 1300 meters deep, are used for case history calculations. The results and some useful conclusions can provide technical reliability in the process of designing well testing in oil or gas wells.
机译:研究了高温高压气井的轴向应力和变形。一个新的模型是多个非线性方程组,它综合考虑了管柱的轴向载荷,内部和外部流体压力,管与井壁之间的法向压力以及流体流动的摩擦和粘滞摩擦。通过关于质量,动量和能量方程的耦合微分方程代替传统方法研究了变化的温度和压力场。借助无因次迭代插值算法,获得了十个管柱的轴向载荷,法向压力,摩擦力和四个变形长度。 X井深1300米的基本数据用于案例历史计算。结果和一些有用的结论可以在设计油井或气井的试井过程中提供技术可靠性。

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