气体钻井最小气体体积流量计算新方法

唐佳彤

唐佳彤. 气体钻井最小气体体积流量计算新方法[J]. 石油钻探技术, 2015, 43(4): 73-77. DOI: 10.11911/syztjs.201504013
引用本文: 唐佳彤. 气体钻井最小气体体积流量计算新方法[J]. 石油钻探技术, 2015, 43(4): 73-77. DOI: 10.11911/syztjs.201504013
Tang Jiatong. A New Calculation Method of Minimum Gas Volume Flow Rate for Gas Drilling[J]. Petroleum Drilling Techniques, 2015, 43(4): 73-77. DOI: 10.11911/syztjs.201504013
Citation: Tang Jiatong. A New Calculation Method of Minimum Gas Volume Flow Rate for Gas Drilling[J]. Petroleum Drilling Techniques, 2015, 43(4): 73-77. DOI: 10.11911/syztjs.201504013

气体钻井最小气体体积流量计算新方法

详细信息
    作者简介:

    唐佳彤(1990—),女,辽宁盘锦人,2013年毕业于长江大学资源勘查专业,在读硕士研究生,主要从事油气田开发方面的研究。

  • 中图分类号: TE242

A New Calculation Method of Minimum Gas Volume Flow Rate for Gas Drilling

  • 摘要: 目前气体钻井时主要采用Angel模型计算注气量,但与实际注气量相比,Angel模型的计算结果往往偏小。为此,结合最小速度理论,首先计算得到携带岩屑所需的最小流速,然后采用最小动能方法求解气体钻井所需的最小气体体积流量。考虑气体流量、环空截面积等因素对气体钻井所需最小气体体积流量的影响,引入颗粒群系数与阻力系数对计算结果进行了修正,使求解得的气体钻井最小注气量更加准确。计算结果表明,修正模型的计算结果比Angel模型更符合现场实际情况,机械钻速、井眼直径对气体钻井最小气体体积流量的计算结果也有很大影响。
    Abstract: Nowadays, gas injection rate for gas drilling is mainly calculated by means of Angel model, but its calculation results are frequently lower than the actual gas injection rates. Therefore, this paper firstly calculates the minimum flow rate necessary for cutting carrying based on the minimum velocity theory, and then calculates the minimum gas volume flow rate required for gas drilling by means of minimum kinetic energy method, the effects of gas flow rate and annulus cross-sectional area on the minimum gas volume flow rate in gas drilling have been analyzed, and particle group coefficient and resistance coefficient are introduced to correct the calculation results, so as to keep the minimum gas injection for gas drilling more accurate. The calculation results indicated that the corrected model is much more accordant with the practical situations than the Angel model, and the calculated minimum gas volume flow rate for gas drilling is greatly affected by the penetration rate and the borehole size.
  • [1]

    Angel R R.Volume requirements for air or gas drilling[R].SPE 873,1957.

    [2] 柳贡慧,刘伟.计算空气-氮气钻井最小气体体积流量的新方法[J].石油学报,2008,29(4):27-30. Liu Gonghui,Liu Wei.A new method for calculating the minimum volumetric flow rate of air in air-nitrogen drilling[J].Acta Petrolei Sinica,2008,29(4):27-30.
    [3] 朱红钧,林元华,杜仁德.空气钻水平井注入参数优化分析[J].天然气工业,2009,29(11):56-58. Zhu Hongjun,Lin Yuanhua,Du Rende.An analysis on the optimization of the injection parameters in horizontal wells by air drilling[J].Natural Gas Industry,2009,29(11):56-58.
    [4] Guo Boyun,Ghalambor Ali.欠平衡钻井气体体积流量的计算[M].胥思平,译.北京:中国石化出版社,2006:9-28. Guo Boyun,Ghalambor Ali.Gas volume requirements for underbalanced drilling[M].Translator: Xu Siping.Beijing:China Petrochemical Press,2006:9-28.
    [5] 苏义脑,周川,窦修荣.空气钻井工作特性分析与工艺参数的选择研究[J].石油勘探与开发,2005,32(2):86-90,122. Su Yinao,Zhou Chuan,Dou Xiurong.Operation characteristics analysis and process parameters selection of air drilling[J].Petroleum Exploration and Development,2005,32 (2):86-90,122.
    [6] 宋荣荣,孙宝江,王志远,等.控压钻井气侵后井口回压的影响因素分析[J].石油钻探技术,2011,39(4):19-24. Song Rongrong,Sun Baojiang,Wang Zhiyuan,et al.Analysis of the influence factors of wellhead back pressure in managed pressure drilling after gas invasion[J].Petroleum Drilling Techniques,2011,39(4):19-24.
    [7]

    Tabatabaei M,Ghalambor A,Guo B.The minimum required gas-injection rate for liquid removel in air/gas drilling[R].SPE 116135,2008.

    [8]

    Yang Wen-Ching.A correlation for solid friction factor in vertical pneumatic conveying lines[J].AICHE Journal,1978,24(3):548-552.

    [9] 李宗清,燕修良,陈永明,等.三参数自动控压钻井系统的研制与试验[J].石油钻探技术,2012,40(6):99-103. Li Zongqing,Yan Xiuliang,Chen Yongming,et al.Development and test of three-parameter automatic pressure control drilling system[J].Petroleum Drilling Techniques,2012,40(6):99-103.
    [10]

    Thorogood J L,Train A S,Adams A J.Deep water riser system design and management[R].SPE 39295,1998.

    [11]

    Denison E B,Kolpak M M,Garrett D L.A comprehension approach to deepwater marine riser management[R].OTC 4811,1984.

    [12] 杨伦,谢一华.气力输送工程[M].北京:机械工业出版社, 2006:79-87. Yang Lun,Xie Yihua.Gas transportation engineering[M].Beijing:China Machine Press,2006:79-87.
    [13] 李士斌,陈晓华,唐玉龙,等.空气钻井最小注气量的计算及其影响参数[J].科学技术与工程,2009,9(22):6634-6638. Li Shibin,Chen Xiaohua,Tang Yulong,et al.Calculation and it’s effect parameters of minimum gas volume of air drilling[J].Science Technology and Engineering,2009,9(22):6634-6638.
    [14] 张济宇,蔡本权.立管固气稀相输送适宜气速的选择[J].化学工程,1974(5):10-13. Zhang Jiyu,Cai Benquan.Selection of feasible gas velocity in the vertical pipe[J].Chemical Engineering,1974(5):10-13.
    [15] 景山,蒋攀亮,胡庆元,等.垂直稀相气力输送压降特征实验[J].过程工程学报,2001,1(1):25-29. Jing Shan, Jiang Panliang,Hu Qingyuan,et al.Pressure drop characteristics of vertical dilute-phase gas conveying[J].The Chinese Journal of Process Engineering,2001,1(1):25-29.
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出版历程
  • 收稿日期:  2015-01-11
  • 修回日期:  2015-06-23
  • 刊出日期:  1899-12-31

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