西南石油大学学报(自然科学版) ›› 2009, Vol. 31 ›› Issue (1): 70-72.DOI: 10.3863/j.issn.1674-5086.2009.01.017

• 石油与天然气工程 • 上一篇    下一篇

海拉尔盆地人工隔层控缝高压裂技术研究

胡永全1 谢朝阳2 赵金洲1 刘斌2 钟灵3   

  1. 1.“油气藏地质及开发工程”国家重点实验室;西南石油大学,四川成都610500;2.大庆油田分公司,黑龙江大庆163453;3.西南石油大学化学化工学院,四川成都610500
  • 收稿日期:1900-01-01 修回日期:1900-01-01 出版日期:2009-02-20 发布日期:2009-02-20

FRACTURE HEIGHT CONTROL BY ARTIFICIAL BARRIER IN HAILAER BASIN

HU Yong-quan1 XIE Chao-yang2 ZHAO Jin-zhou1 LIU Bin2 ZHONG Ling3   

  1. 1.State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation,Southwest Petroleum University,Chengdu Sichuan 610500,China;2.Daqing Oilfield Company,Daqing Heilongjiang 163453,China;3.College of Chemistry and Chemical Engineering,Southwest Petroleum University,Chengdu Sichuan 610500,China
  • Received:1900-01-01 Revised:1900-01-01 Online:2009-02-20 Published:2009-02-20

摘要:

海拉尔盆地大部分井隔层/产层应力差小,有效控制压裂裂缝高度是保证施工成功的关键技术。假定浮式、沉式控缝剂在裂缝端部分别形成具有一定厚度和应力强度(梯度)的人工隔层获得了裂缝剖面上的应力分布。应用线弹性断裂材料的I型裂缝静态延伸准则,首次建立了人工隔层条件下的裂缝高度延伸控制方程作用和人工隔层对裂缝高度延伸的影响。通过编制计算机程序模拟,研究了控缝剂对裂缝高度延伸的控制作用,模拟表明使用控缝剂形成人工隔层可以有效控制压裂缝高度。现场应用证明了采用人工隔层遏制海拉尔盆地压裂裂缝高度延伸是可行的。该方法可以用于现场控缝高压裂设计。

关键词: 海拉尔盆地, 水力压裂, 裂缝高度, 人工隔层, 模拟

Abstract:

Fracture height control is the key technique to make successful hydraulic fracturing in Hailaer Basin because of a small stress difference between barrier and payzone formation.Firstly,stress distribution is obtained,which is induced by artificial barrier with certain thickness and stress strength (graduate) formed by buoyant/setting additive.Secondly,control equation of fracture height is established on the basis of type I crack propagation criterion in linear elastic fracture mechanism,and control role of fluid pressure in crack and effect of artificial barrier on fracture height are quantitatively described.Then,affections of artificial barrier is researched with computer simulation,hydraulic fracture height can be effectively controlled and it is proven from field case in Hailaer Basin.So,this method can be used in oilfield design.

Key words: Hailaer Basin, hydraulic fracturing, fracture height, artificial barrier, simulation

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