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井下高压充填纤维复合防砂体的力学分析
李金发1,2,齐宁1,周福建3,李晓军1,张琪1,刘志良1
(1.中国石油大学石油工程学院,山东东营257061;2.中石化胜利油田分公司滨南采油厂,山东滨州257600;3.中国石油勘探开发研究院,北京100083)
摘要:
从纤维增强树脂涂敷砂强度的机理人手,首先对单根纤维的压应力进行力学分析,构建了单纤维微元体的压 应力力学模型,然后对影响短纤维受力的因素进行分析,采用半经验法确定单向平行短纤维增强复合砂体的工程常 数,对理论预测公式进行修正,并引人纤维分布方位因子,建立了考虑流体剪切冲刷的随机取向短纤维增强砂体强 度的预测模型。利用该模型得到了纤维复合体极限强度与临界产量的关系,从而为优化纤维加入量以及合理控制 开井后的生产制度提供了理论指导。
关键词:  纤维  防砂  力学分析  树脂涂敷砂  高压充填
DOI:
分类号:
基金项目:中石化提髙采收串导向项目(2006-021)
Mechanics analysis of fiber-complex sand control of downhole high-pressure packing
U Jin-fa1,2,QI Ning1,ZHOU Fu-jian3,LI Xiao-jun1,ZHANG Qi1,LIU Zhi-liang1
(1. College of Petroleum Engineering in China University of Petroleum,Dongying 257061,China;2.Binnan Oil Production Plant of Shengli Oilfield Company,SINOPEC,Binzhou 257600,China ;3.Research Institute of Petroleum Exploration & Development, PetroChina, Beijing 1000^3, China)
Abstract:
Considering the mechanism of fiber reinforcing resin-coated sand intensity, the compression stress on single fiber was analyzed, and the mechanical model of single fiber infinitesimal element was developed. Then, the affecting factors of stress on cut fibers were analyzed, and the theoretical forecast formula was amended on the basis of engineering constants of unidirectional parallel cut fibers reinforcement sand complex ascertained by adopting semi-thumb rule. The intensity prediction model of random orientation fiber reinforcement complex was presented considering the erosion effect of fluid on fiber-complex. The relation between fiber-complex intensity extremum and critical yield could be found,and theory guidance could be provided for optimization addtion of fiber to resin-coated sand and optimization and control of production regulations after well opening.
Key words:  fiber  sand control  mechanics analysis  resin-coated sand  high-pressure packing
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