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斜井射孔完井地层破裂压力三维有限元分析

Three Dimensional Finite Element Analysis of Formation Breakdown Pressure for Formation with Perforated Deviated Wells

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【作者】 曲占庆许江华王岩峰孙东海

【Author】 Qu Zhanqing Xu Jianghua Wang Yanfeng Sun Donghai ( College of Petroleum Engineering , China University of Petroleum ( Huadong), Dongying, Shandong , 257062 , China; Xinxing Technology Consultation Centre, Nayang, Henan, 473600, China; Drilling & Exploration Group Company, Daqing Petroleum Administration , Daqing, Heilongjiang, 163413, China)

【机构】 中国石油大学(华东)石油工程学院南阳市新星工业技术咨询中心大庆石油管理局钻探集团中国石油大学(华东)石油工程学院 山东 东营 257062河南 南阳 473600黑龙江 大庆 163413山东 东营 257062

【摘要】 对于斜井射孔完井地层破裂压力的研究,国内外相对较少。在分析总结前人成果的基础上,提出了研究斜井射孔完井地层破裂压力的坐标变换方法,将几何复杂性转化为载荷复杂性,大幅度提高了有限元计算的效率;建立了考虑压裂液渗流影响的三维弹塑性斜井射孔完井地层破裂压力分析模型。根据所建立的力学模型,分析了射孔条件、井斜角和方位角对于破裂压力的影响规律:射孔密度增加,破裂压力明显减小;方位角不同,破裂压力随着井斜角的变化规律不同。

【Abstract】 Not many studies have been conducted on formation breakdown pressure for formation with perforated deviated wells in the world. Based on the analysis of the previous results, the coordinate transformation to investigate the breakdown pressure for formation with perforated deviated wells wa-s proposed. The computation efficiency has been improved significantly by converting geometry complicity to load complicity. Considering the effects of hydraulic fluid flow in porous media, a three dimensional, elastic and plastic formation breakdown pressure analysis model for formation with perforated deviated wells has been created. Based on this model, the effects of perforation condition, wellbore inclination, and azimuth on breakdown pressure were analyzed. The results suggest that formation breakdown pressure decreases with the increasing of perforation density and the variation of the breakdown pressure is different for different wellbore azimuth when wellbore inclination is different.

【基金】 国家自然科学基金资助项目“水平井压裂改选及砾石充填防砂技术研究”(编号:50274055)部分研究成果
  • 【文献出处】 石油钻探技术 ,Petroleum Drilling Techniques , 编辑部邮箱 ,2007年01期
  • 【分类号】TE257
  • 【被引频次】23
  • 【下载频次】400
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