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油管柱

油管柱的相关文献在1989年到2022年内共计646篇,主要集中在石油、天然气工业、安全科学、化学 等领域,其中期刊论文78篇、会议论文5篇、专利文献35080篇;相关期刊37种,包括中国石油大学学报(自然科学版)、石油矿场机械、石油知识等; 相关会议4种,包括2011全国特殊气藏开发技术研讨会、吉林省第四届科学技术学术年会、吉林省第三届科学技术学术年会等;油管柱的相关文献由2513位作者贡献,包括甘庆明、郭秀庭、王书慧等。

油管柱—发文量

期刊论文>

论文:78 占比:0.22%

会议论文>

论文:5 占比:0.01%

专利文献>

论文:35080 占比:99.76%

总计:35163篇

油管柱—发文趋势图

油管柱

-研究学者

  • 甘庆明
  • 郭秀庭
  • 王书慧
  • 石海霞
  • 翁博
  • 任世举
  • 刘洋
  • 刘涛
  • 周广厚
  • 强华
  • 期刊论文
  • 会议论文
  • 专利文献

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    • 练章华; 王天; 牟易升; 罗玉合; 张潮; 高旭
    • 摘要: 复杂力学环境中完井管柱由于处于超高温、高压的环境下,容易发生管柱屈曲,大大影响了管柱的服役寿命.基于弹塑性力学理论建立了实际井况下油管柱屈曲行为分析的有限元力学模型,并在此基础上分析了复杂力学工况下管柱的屈曲形态、横向位移等,再针对加扶正器、优化产量以及伸缩管的设计等缓解管柱屈曲措施对管柱屈曲行为的影响程度开展了研究.结果 发现:在苛刻工况下,油管柱底部易发生较为复杂的屈曲,从井深5 500 ~7 300 m井段的油管柱产生了螺旋屈曲的构型,整段屈曲段长达2 400 m;本文工况下,伸缩短节数达到6个后,全井段油管柱的屈曲段长度和管柱弯曲应力的减小速率大幅降低,伸缩短节的个数对管柱屈曲及弯曲应力影响大幅减弱.对于复杂环境下气井工况而言,控制产量对管柱屈曲行为改善最为明显,其次为扶正器设计,为提高油管柱寿命及气井完整性提供了技术支撑.
    • 练章华; 牟易升; 张强
    • 摘要: 为了系统地、定量地分析极端条件下气井油管柱振动力学行为,根据新疆某油田油管柱结构尺寸,基于有限元法,建立了两种结构带封隔器的极端条件气井油管柱振动有限元力学模型,编写了极端条件下气井油管柱的振动动力学行为分析的APDL有限元程序,对该极端条件下气井管柱振动问题开展了系统分析和研究.研究表明:①对比改进前后管柱结构的前15阶模态和频率,改进后油管柱均有利于减缓振动对油管柱的损伤;②在瞬态动力响应方面,改进后的结构对事故高发(4200~5500 m)油管段内平均应力降低了约104 MPa,同时中和点也下移了231 m,均有利于提高极端条件下气井油管柱安全性及其疲劳寿命.结论表明,建立的模型可分析油管柱的振型,固有频率以及随时间历程变化的应力、速度、位移等,为极端条件下气井油管柱疲劳寿命预测、中和点变化以及油管柱在采气期间的振动力学机理提供定量的数据,同时为新井管柱设计提供了理论依据.
    • 岳明; 龙岩; 张腾; 王磊; 邝献任; 吉楠; 闫湃
    • 摘要: 国内某页岩气井管柱发生外表面腐蚀失效。采用宏观形貌分析、化学成分分析、金相分析、力学性能测试、扫描电子显微镜、能谱分析及XRD分析等手段,系统研究了油管腐蚀机制。结果表明浅井段油管发生严重局部腐蚀,表面腐蚀产物中存在FeS;深井段油管发生均匀腐蚀,腐蚀产物中未见硫化物,主要为FeCO_(3)。页岩气井下管柱随井深变化展现出不同腐蚀特征,浅井段由于温度较低,硫酸盐还原菌大量繁殖,管柱出现细菌腐蚀;深井段由于环境温度高,有效抑制了硫酸盐还原菌活性,管柱主要呈现CO_(2)造成的均匀腐蚀。建议重点针对浅井段细菌腐蚀开展杀菌防腐措施。
    • 张智; 刘金铭; 张华礼; 李玉飞; 罗伟
    • 摘要: 针对注CO2采油井生产中油管柱存在的腐蚀现象,开展了注CO2采油井不同阶段的油管腐蚀规律研究.对油管柱CO2腐蚀进展进行了概述,基于动力学原理与金属的电化学腐蚀理论,考虑油气生产过程的产液量、含水率、井口温度、生产压差、流体流速等因素,得到油管内温度压力分布,研究了CO2采油井油管腐蚀速率预测方法.对实例井的油管柱腐蚀速率做出了预测,并开展主控因素下油管柱腐蚀速率随时间、井深的变化规律研究.结果 表明,在整个吞吐周期中,油管腐蚀主要发生在生产阶段.腐蚀情况预测结果与现场实测腐蚀情况吻合较好.
    • 牟易升; 练章华; 张强; 路宗羽; 李杰
    • 摘要: 为对苛刻工况中超深气井油管柱的屈曲行为进行完整、定量的研究,针对塔里木油田某超深气井油管柱,采用接触问题的有限元法,建立了原始油管和带扶正器油管2种工况下的有限元模型,并对油管柱的屈曲、接触问题进行模拟.结果表明:2种工况下的油管柱均在中和点到封隔器段发生了非均匀的正弦屈曲,加扶正器油管屈曲后横向位移小,屈曲段变长,屈曲形态有所改善;该模型可以全井段对原始油管柱和带扶正器油管柱屈曲形态进行对比分析,并且可获取原始油管屈曲后与套管的接触压力及其摩擦力,可为扶正器位置设计和油套管摩擦损伤失效分析提供定量数据参考.%In order to study the buckling behavior of tubing string in the ultra-deep gas well under severe conditions com-pletely and quantitatively,aiming at the tubing string of a certain ultra-deep gas well in Tarim oilfield, the finite element models under two types of conditions including the original tubing string and the tubing string with the centralizer were estab-lished by using the finite element method of contact problem, then the buckling and contact problems of the tubing string were simulated. The results showed that the non-uniform sinusoidal buckling occurred in the section from the neutral point to the packer for the tubing string under both two conditions. The lateral displacement after the buckling of the tubing string with the centralizer was smaller,the buckling section was longer,and the buckling shape was improved. This model can be used to comparatively analyze the buckling shapes of the original tubing string and the tubing string with the centralizer in the whole well section, and obtain the contact pressure and friction force between the casing and the original tubing after the buckling,so as to provide the quantitative data reference for the design of centralizer position and the failure analysis on the friction damage of the tubing and casing.
    • 练章华; 牟易升; 刘洋; 许定江
    • 摘要: 对于超深、高温、高压以及高产等复杂工况的气井,前人推导的管柱屈曲行为经典理论公式无法完整或准确地描述油管柱底部非均匀或非完整的正弦屈曲或螺旋屈曲形态.为此,采用ANSYS软件,建立了超深井全井筒油管柱屈曲行为分析的有限元力学模型,并以塔里木油田某超深井为例,针对管柱屈曲行为开展了油管柱屈曲形态与其横向位移、油管—套管接触压力分析.结果表明:①所建立的高温高压深井超深井油管柱屈曲分析有限元模型可以对油管柱屈曲形态进行全井段分析,复杂力学工况下的油管柱中和点到封隔器处的油管柱处于非均匀或非完整的正弦屈曲或螺旋屈曲;②油管柱底部轴向压力为205 kN时,油管柱接触段的顶部和底部分别发生正弦屈曲、螺旋屈曲自锁现象,该自锁现象可能导致油管柱处于永久性的屈曲状态.结论认为,所建立的模型可用于分析油管—套管屈曲过程中的屈曲形态、接触压力及其摩擦力,为油管柱屈曲形态、摩擦损伤失效分析及预防措施制定等提供了方法和依据.还提出了延长管柱使用寿命的措施建议:油管柱坐封前在井口施加适当的提拉力、增加底部油管柱结构尺寸、提高井口油压或适当降低产量等.%Classical theoretical formulas for the buckling of pipe strings derived by previous researchers may not completely and accurately describe the non-uniform or incomplete sinusoidal buckling or helical buckling forms around the bottom of tubing strings in HTHP ultra-deep gas wells.In this paper,a finite element mechanical model for analyzing the buckling behaviors of tubing strings in HTHP ultra-deep wells was established by using the software ANSYS.With an ultra-deep well in the Tarim Oilfield as an example,systematic analyses were conducted on the buckling of tubing strings with regard to buckling configuration,horizontal displacement,tubing-casing contact pressure.The results are revealed in two aspects.First,the proposed finite element analysis model for the buckling behaviors of tubing strings in HTHP ultra-deep wells can be used to highlight buckling configurations throughout the entire hole.It can be seen that the interval between the central point and the packer under complicated mechanical conditions is in inhomogeneous,or incomplete sinusoidal or helical buckling forms.Second,in such cases with an axial pressure of 205 kN at the bottom of the tubing string,the contact sections at the top and bottom of the string may experience self-locking due to sinusoidal and helical buckling,respectively.The self-locking phenomenon may lead to permanent buckling of such strings.In conclusion,the proposed model can be used to highlight buckling configurations,contact pressures and frictions during tubing-casing buckling.The model provides a reliable technique and foundation for analyses related to buckling configurations,friction damages,failures and relevant prevention measures.To prolong the service life of tubing strings,it is necessary to apply suitable lifting forces,enlarge the dimensions of tubing strings at bottom,promote wellhead pressures or properly reduce productivities.
    • 温后珍; 闫兵洋; 曹梦雨; 王尊策; 李仁峰; 葛朋
    • 摘要: 油管柱在套管中的屈曲行为对油气生产有重要影响.依据相似理论,采用1;10的比例尺以缩小的油管、套管模型进行了3组试验,安装分别为:①油管和套管上下同心;②油管上部偏心2.5 mm;③油管上下都朝同一个方向偏心2.5 mm.每次试验时都在油管的一端连续施加轴向栽荷,测试油管另一端的轴向载荷.分析不同条件下摩擦力的变化,研究结果表明:管柱受压屈曲会导致摩擦力增大;管柱相对套管的偏心对轴向力的分布影响很小;证明了管柱力学分析理论中轴向力计算时油管与套管同心的假设是合理的.%The buckling behavior of tubing string in the casing is the key problem in petroleum engineering,which has important influence on oil and gas production.In this paper,based on the similarity theory,using the 1 ∶ 10 scale to shrink tubing and casing model for three groups of test,one is installed when the tubing and casing concentric.The second is the upper eccentric 2.5 mm.Eccentric top and bottom tubes are all in the same direction in three is 2.5 mm.Each test continuous apply axial load at the end of the tubing,test the axial load at the other end of tubing.The change of friction under different conditions is analyzed,the results show that the compression of pipe string buckling causes friction increases.The relative casing string eccentric little impact on the distribution of axial force.For the tubular mechanical theory of axial force calculation,it proved the assumption that the tubing is concentric with the casing is reasonable.
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