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Experimental study and dynamic characteristics analysis of partially liquid-filled annulus tubes

机译:部分液体填充环空管的实验研究与动态特性分析

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摘要

As a useful technology, the horizontal drilling for underground coalmine has been applied in many fields such as gas drainage, water control, exploration and accurate drilling borehole engineering. In this paper, the annulus tubes are used to simulate the fluid transportation process between drilling rod and casing tube when drilling horizontally. The main goal of this research is to analyze the effects of eccentricity, fluid velocity, outer tube length and volume fraction on dynamic characteristics of partially liquid-filled annulus tube in a drillstring system. According to the Euler-Bernoulli beam model, the partially liquid-filled inner tube model and outer tube model are established respectively when considering the effect of transport fluid inside the annulus tubes. Based on the vibration characteristics of the tube, the added mass coefficient is proposed to calculate the natural frequencies of the outer tubes. And natural frequency is the frequency at which a system tends to oscillate in the absence of any driving or damping force. According to the compared results of experiments and simulations, the natural characteristics of outer tube depend on the tube design parameter (outer tube length) and the volume fraction of liquid filled in the outer tube. Furthermore, experiments have verified that the natural frequencies of the outer tubes can be directly calculated from the length of outer tubes. Therefore, it is feasible to propose the method of attaching liquid mass to tube mass to obtain the natural frequencies of outer tubes. According to the results, it can be concluded that: (i) The natural frequencies of tube decrease as the length of the tube increases; (ii) The increase of volume fraction of liquid in the tube can significantly reduce the natural frequencies of tube; (iii) The fluid velocity and eccentricity have less effects on the natural frequencies of tube; (ⅳ) The added mass coefficient of outer tubes can be calculated and it is not a fixed value, it varies with the volume fraction of fluid in annulus tubes. In this work, the inner and outer tube models are established respectively for fluid transportation process between a horizontal drilling rod and casing tube. The effects of four factors on the natural frequencies are compared, and the concept of added mass coefficient is proposed to obtain reasonable tube natural frequencies.
机译:作为一个有用的技术,为煤矿井下水平钻孔已经在许多领域,如瓦斯抽放,控水,勘探和钻井准确钻孔工程应用。在本文中,所述环管被用来模拟钻杆和水平钻井时壳体管之间的流体输送过程。这项研究的主要目标是分析偏心率,流体速度,外管长度和体积分数对在钻柱系统部分液体填充的环管的动态特性的影响。根据欧拉-Bernoulli梁模型,部分液体填充内管型号和外管模型正在考虑运输流体的环形管内的效果时分别建立。基于该管的振动特性,增加的质量系数,提出了以计算外管的固有频率。和固有频率是在一个系统趋向于在没有任何驱动或阻尼力振荡频率。根据实验和模拟比较结果,外管的固有特性依赖于管的设计参数(外管长度)和填充在所述外管的液体的体积分数。此外,实验已证实,外管的固有频率可以从外管的长度被直接计算。因此,可行的是提出液体质量附着到管的质量,以获得外管的固有频率的方法。根据该结果,可以得出结论是:(i)减少管作为管的长度增加的固有频率; (ⅱ)在管可以显著减少管的固有频率液体体积分数的增加; (ⅲ)中的流体的速度和偏心度对管的固有频率的效果更小; (ⅳ)外管的附加质量系数可以被计算并且它不是一个固定值,它与流体在环形管中的体积分数而变化。在这项工作中,内管和外管的模型用于水平钻杆和套管之间的流体运输过程中分别建立。四个因素对固有频率影响进行比较,并且附加质量系数的概念提出了,以获得合理的管的固有频率。

著录项

  • 作者

    Hongyuan Sun; Ao Zhang; He Li;

  • 作者单位
  • 年度 2018
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  • 原文格式 PDF
  • 正文语种 eng
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