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首页> 外文期刊>Journal of Petroleum Science & Engineering >Research advances and debates on tubular mechanics in oil and gas wells
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Research advances and debates on tubular mechanics in oil and gas wells

机译:石油和天然气井管式力学研究进展与辩论

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摘要

Tubular strings in oil and gas wells are the backbone and central nervous system of oil and gas drilling and production operations. Tubular mechanics in oil and gas wells is the most important applied fundamental science in petroleum and gas engineering. This paper first introduces monographs on tubular mechanics in oil and gas wells, as well as scholars engaged in investigating this field. Then the methods used in this research are explored, and basic concepts are clarified. The paper then focuses on research progress and debates about the fundamental principles of tubular mechanics in oil and gas wells, the motion states of tubular strings in oil and gas wells, the fundamental equations for dynamic analysis of the rod and pipe string in oil and gas wells, the stability of the rod and pipe string in oil and gas wells, the steady-state tension and torque in the rod and pipe strings in oil and gas wells, three-dimensional mechanical analysis of the bottom hole assembly, the drill string dynamics, casing string mechanical analysis, testing string mechanical analysiq, fracturing/water injection/steam injection tubing string mechanical analysis, diagnosis and parameter optimization of the sucker rod pump system as well as energy savings, vibration of the gas production tubing string, impact vibration of the string, expansion screen pipe/casing mechanical analysis, riser string and deepwater pipeline mechanical analysis, vibration wave signal transmission in the string, wear and corrosion as well as erosion of the string, and residual strength and fatigue strength forecasts, connections mechanical analysis, strength design and verification of the string. In the end, the paper discusses key future research directions.
机译:油气井管柱是油气钻井和生产作业的中枢和中枢神经系统。油气井管道力学是石油天然气工程中最重要的应用基础科学。本文首先介绍了油气井管状力学方面的专著,以及从事该领域研究的学者。然后探讨了本研究所采用的方法,并阐明了基本概念。重点介绍了油气井管柱力学的基本原理、油气井管柱的运动状态、油气井杆管柱动力学分析的基本方程、油气井杆管柱的稳定性、油气井杆管柱的稳定性等方面的研究进展和争论,油气井中杆和管柱的稳态张力和扭矩,井底组件的三维力学分析,钻柱动力学,套管柱力学分析,测试管柱力学分析,压裂/注水/注汽油管柱力学分析,有杆泵系统的诊断和参数优化,以及节能、采气油管柱的振动、管柱的冲击振动、膨胀筛管/套管的力学分析、立管柱和深水管道的力学分析、管柱中的振动波信号传输、管柱的磨损和腐蚀以及腐蚀,以及剩余强度和疲劳强度预测、连接件力学分析、管柱强度设计和验证。最后,本文讨论了未来的主要研究方向。

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