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首页> 外文期刊>Journal of Energy Resources Technology >Coupled Stress and Pressure Waves Propagation in an Elastic Solid Tube Submerged in Fluids
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Coupled Stress and Pressure Waves Propagation in an Elastic Solid Tube Submerged in Fluids

机译:浸没在流体中的弹性固体管中的应力和压力波耦合传播

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The present paper studies the effect of mandrel pop out on the dynamics of a solid tubular submerged in fluids of a typical vertical wellbore. A mathematical model describing the stress and pressure waves within the tubular-fluid system (inner and outer fluids as well as solid tube) has been developed. The model takes into account the coupling effect of the three mediums. A specific case of a 127 mm solid tubular, placed inside a 340 mm borehole with different inner and outer fluids was considered. An analytical solution of the developed model was obtained. It was found that the excitation of the system splits into several components and propagates within the three mediums. In addition, the coupling effect revealed modification in the normal waves' speeds and frequencies as compared to the uncoupled solution and identifies associated natural frequencies. Moreover, it was noticed that the maximum vibration occurs at the free end of the tubular and that the tube may experience local buckling in the neighborhood of the fixed end.
机译:本文研究了心轴弹出对浸没在典型垂直井眼流体中的固体管动力学的影响。已经开发出描述管状流体系统(内部和外部流体以及固体管)中的应力和压力波的数学模型。该模型考虑了三种介质的耦合效应。考虑了将127毫米实心管放置在340毫米井孔内,内部和外部流体不同的情况。获得了所开发模型的解析解。已经发现,系统的激发分裂为几个成分,并在三种介质中传播。此外,与未耦合的解相比,耦合效应揭示了法向波​​的速度和频率发生了变化,并确定了相关的固有频率。而且,已经注意到最大的振动发生在管的自由端,并且管可能在固定端附近经历局部弯曲。

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