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Experimental and numerical study of drill string dynamics in gas drilling of horizontal wells

机译:水平井瓦斯钻井中钻柱动力学的实验与数值研究

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The combination of gas drilling and horizontal well has been considered as an effective technique for the exploitation of low permeability reservoirs to protect reservoir, enlarge drainage area and increase production. Given the currently inadequate understanding about drill string dynamic characteristics in gas drilling of horizontal wells, a theoretical model of drill string dynamics is established in this paper. The nonlinear dynamics equations are derived to study the motion state of drill string. Meanwhile, an experimental apparatus is developed according to similarity principle, and the kinetic characteristic of drill string is investigated based on the simulation experiment. Particular attention is focused on the lateral vibration which results from the impact and frictional interaction with wellbore constraint. The effect of weight on bit and rotary speed on drill string motion pattern is also discussed based on experimental results. Finally, the buckling and contact of drill string are analyzed through finite element simulation study. The results indicates that the contact force between wellbore and drill string is relatively large and helical buckling of drill string can be caused without the lubrication and damping effects of drilling fluid in gas drilling. The work presented in this paper can provide theoretical foundation and technological basis for drill string dynamics analysis and drilling parameter optimization in horizontal wells drilled with gas. (C) 2015 Elsevier B.V. All rights reserved.
机译:天然气钻井和水平井相结合已被认为是开发低渗透油藏的有效技术,可以保护油藏,扩大排水面积并增加产量。鉴于目前对水平井瓦斯钻井中钻柱动力学特性的了解不足,本文建立了钻柱动力学理论模型。推导了非线性动力学方程,以研究钻柱的运动状态。同时,根据相似原理研制了实验装置,并在模拟实验的基础上研究了钻柱的动力学特性。特别要注意的是侧向振动,它是由井筒约束下的冲击和摩擦相互作用引起的。根据实验结果,还讨论了重量对钻头的影响以及转速对钻柱运动方式的影响。最后,通过有限元模拟研究分析了钻柱的屈曲和接触。结果表明,井筒与钻柱之间的接触力较大,在没有气体钻井时钻井液的润滑和阻尼作用的情况下,会引起钻柱的螺旋屈曲。本文的工作可为天然气钻井水平井的钻柱动力学分析和钻井参数优化提供理论基础和技术基础。 (C)2015 Elsevier B.V.保留所有权利。

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