天然气地球科学

• 天然气开发 • 上一篇    下一篇

高含水致密气藏水平井稳产原因分析及启示——以鄂尔多斯盆地大牛地气田为例

丁景辰   

  1. 中国石化华北油气分公司勘探开发研究院,河南  郑州 450006
  • 收稿日期:2016-07-06 修回日期:2016-09-27 出版日期:2017-01-10 发布日期:2017-01-10
  • 作者简介:丁景辰(1989-),男,河南南阳人,工程师,博士,主要从事非常规油气田开发研究. E-mail:dingjingchen@163.com.
  • 基金资助:

    国家科技重大专项 “鄂尔多斯盆地北缘低丰度致密低渗气藏开发关键技术”(编号:2016ZX05048-002)资助.

Analysis and inspiration of stable production of horizontal wells in high water saturation tight gas reservoir:A case study of Daniudi Gasfield,Ordos Basin

Ding Jing-chen   

  1. Exploration and Development Research Institute,SINOPEC North China Company,Zhengzhou 450006,China
  • Received:2016-07-06 Revised:2016-09-27 Online:2017-01-10 Published:2017-01-10

摘要:

大牛地气田2014年投产水平井稳产至今,并未出现明显的产能递减,其递减规律和以往历年投产井的结果及国内外同类气藏的开发结果出现明显差异。对这一部分水平井和之前历年投产井进行了对比分析,并将其稳产原因分为地质原因、工程原因和管理原因3大类.其中地质原因包括储层产水、水平井钻遇砂岩长度和储层生烃强度等因素;工程原因主要指压裂设计和施工的因素;管理原因主要包括排水采气思路和配产思路的转变。研究结果表明:产水对致密气藏气井生产具有控制作用,产水量越低,气井越容易稳产。气测显示砂岩长度和储层生烃强度越高,越有利于气井稳产。压裂规模越大、返排率越高,越有利于气井稳产。对于高含水致密气藏来说,排水是开发第一要务,应确立“排水和采气同等重要、同步进行”的整体开发思路。在保证排水的情况下降低配产比例,可以有效降低投产初期储层压降速率,更有利于气井的稳产。同时提出,对于致密气藏来说高效开发关键在于科学管理,“低产气+高产水≠无法稳产”。通过对地质条件认识的深化、通过钻井和压裂等工程工艺的改进,通过开发思路的优化调整,同样可以在高含水致密气藏中做到气井的长期稳产。

关键词: 致密气藏, 高含水, 水平井, 稳产, 产能递减

Abstract:

Horizontal wells put into production in 2014 of Daniudi Gasfield show stable well productivity up to now,the law of productivity decline of these wells are apparently different from both wells in past years and wells in similar gas reservoirs.Causal analysis was carried out to study the stable production of horizontal wells put into production in 2014 of Daniudi Gasfield.Causes of the stable production were classified into geological reasons,engineering reasons and management reasons.Geological reasons include water production,length of sandstone in horizontal well and hydrocarbon-generating intensity.Engineering reasons refer mainly to design and construction of fracture and management reasons include the change of thought in drainage and proportion of production.Results show that water production is critical to the well production in tight gas reservoir,the lower the water production is,the easier the stable gas production will achieve.Bigger length of sandstone in horizontal well,higher hydrocarbon-generating intensity,bigger scale of fracturing and higher flow-back rate would also be advantageous to stable gas production.For high water saturation tight gas reservoir,top priority should be given to drainage.It is important to clear the development idea that “drainage and gas production are equally important and should be carried out simultaneously”.Reduce the proportion of production under efficient drainage can reduce the pressure drop rate of formation and is in favor of stable gas production.It is also proposed that for tight gas reservoir,scientific management is the key to efficient development,“ow gas production + high water production≠productivity decline”.Long-term stable production can also be achieved in high water saturation tight gas reservoir through deepened understanding of geological conditions,improvement of drilling/fracturing technology and optimization of development ideas.

Key words: Tight gas reservoir, High water saturation, Horizontal well, Stable production, Productivity decline

中图分类号: 

  • TE243

[1]Hu Yong,Li Xizhe,Lu Xiangguo,et al.The realization of the active mechanism between formation and water in tight sand gas reservoir with high water saturation[J].Natural Gas Geoscience,2014,25(7):1072-1076.[胡勇,李熙喆,卢祥国,等.高含水致密砂岩气藏储层与水作用机理[J].天然气地球科学,2014,25(7):1072-1076.]
[2]Li Zuyou,Yang Xiaobi,Yan Xiaoyong,et al.Transient productivity evaluation method for fractured horizontal well in low-permeability and tight gas reservoir[J].Drilling & Production Technology,2013,36(3):66-67.[李祖友,杨筱璧,严小勇,等.低渗透致密气藏压裂水平井不稳定产能研究[J].钻采工艺,2013,36(3):66-67.]
[3]Shi Mei,Yuan Quan,Zhang Youcai,et al.Production decline and affecting factors analysis of low-permeability water-bearing gas reservoir in Xujiahe Formation,central Sichuan Basin[J].Natural Gas Exploration and Development,2014,37(4):25-28.[石美,袁权,张友彩,等.川中须家河组低渗含水气藏产量递减规律及影响因素分析[J].天然气勘探与开发,2014,37(4):25-28.]
[4]Li Bo,Jia Ailin,He Dongbo,et al.Productivity evaluation of horizontal wells in Sulige tight gas reservoir with strong heterogeneity[J].Natural Gas Geoscience,2015,26(3):539-549.[李波,贾爱林,何东博,等.苏里格气田强非均质性致密气藏水平井产能评价[J].天然气地球科学,2015,26(3):539-549.]
[5]Lu Shikuo,Wang Di,Li Yukun,et al.Research on three-dimensional mechanical parameters’ distribution of the tight sandstone reservoirs in Daniudi Gasfield[J].Natural Gas Geoscience,2015,26(10):1844-1850.[陆诗阔,王迪,李玉坤,等.鄂尔多斯盆地大牛地气田致密砂岩储层三维岩石力学参数场研究[J].天然气地球科学,2015,26(10):1844-1850.]
[6]Wang Fubin,Jia Huichong,Meng Juntian.Gas reservoirs analysis of the He 2+3 member of Lower Shihezi Formation at Daniudi Gasfield in Erdos Basin[J].Journal of Northwest University:Natural Science Edition,2004,34(5):587-590.[王付斌,贾会冲,孟军田.鄂尔多斯盆地大牛地气田盒2+3气藏特征[J].西北大学学报:自然科学版,2004,34(5):587-590.]
[7]Hou Ruiyun,Liu Zhongqun.Resevoir evaluation and development strategies of Daniudi tight sand gasfield in the Ordos Basin[J].Oil & Gas Geology,2012,33(1):118-128.[侯瑞云,刘忠群.鄂尔多斯盆地大牛地气田致密低渗储层评价与开发对策[J].石油与天然气地质,2012,33(1):118-128.]
[8]Wei Guoqi,Zhang Fudong,Li Jun,et al.New progress of tight sand gas accumulation theory and favorable exploration zones in China[J].Natural Gas Geoscience,2016,27(2):199-210.[魏国齐,张福东,李君,等.中国致密砂岩气成藏理论进展[J].天然气地球科学,2016,27(2):199-210.]
[9]Zou Caineng,Zhu Rukai,Wu Songtao,et al.Types,characteristics,genesis and prospects of conventional and unconventional hydrocarbon accumulations:Taking tight oil and tight gas in China as an instance[J].Acta Petrolei Sinica,2012,33(2):173-187.[邹才能,朱如凯,吴松涛,等.常规与非常规油气聚集类型、特征、机理及展望——以中国致密油和致密气为例[J].石油学报,2012,33(2):173-187.]
[10]Hu Yong,Li Xizhe,Wan Yujin,et al.Physical simulation on gas percolation in tight sandstone[J].Petroleum Exploration and Development,2013,40(5):580-584.[胡勇,李熙喆,万玉金,等.致密砂岩气渗流特征物理模拟[J].石油勘探与开发,2013,40(5):580-584.]
[11]Hu Yong,Shao Yang,Lu Jialiang,et al.Experimental study on occurrence models of water in pores and the influencing to the development of tight gas reservoir[J].Natural Gas Geoscience,2011,22(1):176-181.[胡勇,邵阳,陆家亮,等.低渗气藏储层孔隙中水的赋存模式及对气藏开发的影响[J].天然气地球科学,2011,22(1):176-181.]
[12]Cao Qing,Zhao Jingzhou,Fu Jinhua,et al.Gas source conditions of quasi-continuous accumulation of the Upper Paleozoic in Ordos Basin[J].Oil & Gas Geology,2013,34(5):584-591.[曹青,赵靖舟,付金华,等.鄂尔多斯盆地上古生界准连续型气藏气源条件[J].石油与天然气地质,2013,34(5):584-591.]
[13]Xie Runcheng,Zhou Wen,Li Liang.Post fracture response analysis of Upper Paleozoic gas reservoir in Daniudi in Ordos Basin[J].Natural Gas Industry,2004,24(12):71-73.[谢润成,周文,李良.鄂尔多斯盆地大牛地上古生界气藏压裂效果分析[J].天然气工业,2004,24(12):71-73.]
[14]Zhu Weiyao,Ma Dongxu,ZhuHuayin,et al.Stress sensitivity of shale gas reservoir and its influence on productivity[J].Natural Gas Geoscience,2016,27(5):892-897.[朱维耀,马东旭,朱华银,等.页岩储层应力敏感性及其对产能影响[J].天然气地球科学,2016,27(5):892-897.]
[15]Liu Xiaopeng,Liu Yan,Chen Juanping.Characteristics of micro pore structure and seepage in tight sandstone gas reservoir of the 8th section of Shihezi Formation in Ordos Basin,China [J].Natural Gas Geoscience,2016,27(7):1225-1234.[刘晓鹏,刘燕,陈娟萍,等.鄂尔多斯盆地盒8段致密砂岩气藏微观孔隙结构及渗流特征[J].天然气地球科学,2016,27(7):1225-1234.]

[1] 黄雨,李晓平,谭晓华. 三重介质复合气藏水平井不稳定产量递减动态分析[J]. 天然气地球科学, 2018, 29(8): 1190-1197.
[2] 朱宽亮,吴晓红,康毅力,游利军,田键,宋静晗. 致密火山岩气藏水相和油相圈闭损害实验评价——以南堡凹陷5号构造沙河街组为例[J]. 天然气地球科学, 2018, 29(7): 1042-1050.
[3] 吴明涛,王晓冬,姚天福. 致密气藏气井非稳态线性渗流特征分析新方法[J]. 天然气地球科学, 2018, 29(7): 1060-1066.
[4] 曾凡辉,王小魏,郭建春,郑继刚,李亚州,向建华. 基于连续拟稳定法的页岩气体积压裂水平井产量计算[J]. 天然气地球科学, 2018, 29(7): 1051-1059.
[5] 吕志凯,贾爱林,唐海发,刘群明,王泽龙. 大型致密砂岩气藏水平井产能评价与新认识[J]. 天然气地球科学, 2018, 29(6): 873-879.
[6] 翁定为,付海峰,包力庆,胥云, 梁天成,张金. 水平井平面射孔实验研究[J]. 天然气地球科学, 2018, 29(4): 572-578.
[7] 卢文涛,李继庆,郑爱维,梁榜,张谦,杨文新. 涪陵页岩气田定产生产分段压裂水平井井底流压预测方法[J]. 天然气地球科学, 2018, 29(3): 437-442.
[8] 巫修平,张群. 碎软低渗煤层顶板水平井分段压裂裂缝扩展规律及控制机制[J]. 天然气地球科学, 2018, 29(2): 268-276.
[9] 梁榜,李继庆,郑爱维,卢文涛,张谦. 涪陵页岩气田水平井开发效果评价[J]. 天然气地球科学, 2018, 29(2): 289-295.
[10] 王业众,段国彬,桑宇,彭华,张林,周长林,余良志,陈伟华. 衬管完井水平井新型布酸技术研究与应用——以安岳气田磨溪构造龙王庙组气藏为例[J]. 天然气地球科学, 2017, 28(8): 1264-1268.
[11] 严谨,何佑伟,史云清,郑荣臣,程时清,于海洋,李鼎一. 致密气藏水平井压裂缝不均匀产气试井分析[J]. 天然气地球科学, 2017, 28(6): 839-845.
[12] 庞强, 冯强汉,马妍,张昱煜,彭雪花. 三维地质建模技术在水平井地质导向中的应用——以鄂尔多斯盆地苏里格气田X3-8水平井整体开发区为例[J]. 天然气地球科学, 2017, 28(3): 473-478.
[13] 田冷,李鸿范,马继翔,谢全,顾岱鸿,任效星. 基于启动压力梯度与应力敏感的致密气藏多层多级渗流模型[J]. 天然气地球科学, 2017, 28(12): 1898-1907.
[14] 贾建称,陈晨,董夔,吴艳,吴敏杰. 碎软低渗煤层顶板水平井分段压裂高效抽采煤层气技术研究[J]. 天然气地球科学, 2017, 28(12): 1873-1881.
[15] 胡永全,蒲谢洋,赵金洲,杨文露. 页岩气藏水平井分段多簇压裂复杂裂缝产量模拟[J]. 天然气地球科学, 2016, 27(8): 1367-1373.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!