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The Study of Tubing Vibration Mechanism in High Pressure Gas Well

机译:高压气体管振动机理研究

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Deep gas wells and gas fields have the characteristics of high pressure. The vibration of the tubing string during the production of gas wells causes the string to be subjected to severe stress and even dynamic fatigue failure. Therefore, this article is based on the dynamic finite element theory, aiming at the characteristics of large-size tubing strings in deep gas wells. The finite element mechanics model and mathematical model of the tubing string vibration of the packer of high-pressure gas wells were established, and the ANSYS software was re-developed. The finite element analysis program for the vibration dynamics of the unbuckled and buckled strings of gas wells was compiled with APDL, and the displacement of the longitudinal vibration of the tubing string of high-pressure gas wells was studied. According to different sizes of tubing strings currently used in deep gas wells and gas fields, simulation calculations are carried out, and the axial impact load and buckling damage laws of the tubing strings of the entire well section under different production rates are obtained. It provides a theoretical basis for the prediction of tubing string vibration law and measures to prevent tubing string vibration.
机译:深气井和气田具有高压的特点。气井生产过程中的管柱的振动使得绳子受到严重的应激甚至动态疲劳失败。因此,本文基于动态有限元理论,旨在深气井井大尺寸管弦串的特性。建立了高压气井封装管柱振动的有限元力学模型和数学模型,重新开发了ANSYS软件。用APDL编制了用于膨胀和弯曲串的气体阱的振动动力学的有限元分析程序,研究了高压气体孔的管柱的纵向振动的位移。根据当前用于深气井和气田的不同尺寸的管道串,进行了模拟计算,获得了在不同生产率下整个井部分的管道串的轴向冲击载荷和屈曲损伤规律。它为预测管绳振动法和防止管弦振动的措施提供了理论依据。

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