水力振荡器在中深定向井提速提效中的应用
Application of Hydraulic Oscillator in the Speed-Up and Efficiency Enhancement of Medium-Deep Directional Well Drilling
DOI: 10.12677/JOGT.2016.382017, PDF, HTML, XML,  被引量 下载: 1,954  浏览: 3,835 
作者: 陈 波, 张 弦:中石化江苏工程公司安徽分公司,安徽 天长 ;刘 松:中石油川庆钻探川东钻探公司,重庆
关键词: 轴向振荡钻压大位移井摩阻机械钻速Axial Oscillation Drilling Pressure Frictional Resistance of Large Displacement Well ROP
摘要: 随着勘探开发的不断深入,东部老油田苏皖油区中深定向井、大位移井越来越多。针对中深定向井、大位移井中常见的定向段托压、黏卡严重,使用PDC钻头钻进时工具难以稳定,钻压无法真实有效传递等问题,开展了使用水力振荡器提高机械钻速的研究。对水力振荡器技术原理、组成、工作原理进行了分析,在H159-7、HX161、HX162等井成功应用。实践表明,利用水力振荡器将钻具的静摩擦变为动摩擦,可以有利于解决中深定向井、大位移井中定向段托压情况和钻压不能有效传递的问题。为破解中深定向井提速难题提供了借鉴,经济效益也随着滑动进尺的增加而逐步提高。
Abstract: With the continuous deepening of oilfield exploration, more and more medium-deep directional wells and large displacement wells were drilled in the eastern Jiangsu-Anhui Oil Region. In order to solve the problems, such as supporting pressure in directional sections, serious drill pipe sticking, instability of tool in drilling with PDC bit and the ineffective transmission of WOB and so on, a hydraulic oscillator was used to improve the penetration rate of these wells. The principle, composition and the working principle of hydraulic oscillator were analyzed, and it was successfully applied in Wells H159-7, HX161 and HX162. Application shows that the static friction of drilling tool being turned into the dynamic friction by using the hydraulic oscillator is beneficial for solving the problems stated above. It provides reference for solving the problem of speed-up in directional well drilling, the drilling efficiency is raised with the increase of sliding footage.
文章引用:陈波, 张弦, 刘松. 水力振荡器在中深定向井提速提效中的应用[J]. 石油天然气学报, 2016, 38(2): 66-72. http://dx.doi.org/10.12677/JOGT.2016.382017

参考文献

[1] 陶兴华. 提高深井钻井速度的有效技术方法[J]. 石油钻采工艺, 2001, 23(5): 4-8.
[2] 田峥, 楼一珊, 刘新锋, 等. 新疆准格尔盆地三台地区钻井提速研究[J]. 长江大学学报(自科版), 2010, 7(1): 194-196.
[3] 王敏生, 王智锋, 李作会, 等. 水力脉冲式钻井工具的研制与应用[J]. 石油机械, 2006, 34(5): 27-28.
[4] 付加胜, 李根生, 史怀忠, 等. 井下振动减摩技术研究进展[J]. 石油机械, 2012, 40(10): 6-10.
[5] 李博, 王羽曦, 孙则鑫, 等. 178型水力振荡器研制与应用[J]. 石油矿场机械, 2013, 42(8): 55-57.
[6] 石崇东, 党克军, 张军, 等. 水力振荡器在苏36-8-18H井的应用[J]. 石油机械, 2012, 40(3): 35-38.
[7] 丁培积, 陈天成, 刘嘉铭, 等. 水平井水力加压工具及其应用[J]. 石油钻探技术, 1995, 23(3): 41-43.
[8] 陶兴华. 液动射流式冲击器工作数学模型建立[J]. 石油钻探技术, 2005, 33(1): 44-47.
[9] 杨顺辉, 陶兴华, 殷琨, 等. 计算流体动力学在冲击器设计和模拟中的应用[J]. 石油钻探技术, 2008, 36(5): 40-42.