期刊文献+

纤维水泥浆体系防漏性能评价及作用机制 被引量:7

Anti-lost-circulation performance evaluation and function mechanism of fiber slurry system
在线阅读 下载PDF
导出
摘要 在固井过程中遇到孔洞型或裂缝型漏失地层时,水泥浆会漏失低返,造成环空流速下降,降低顶替效率、影响胶结质量和油气井产能。运用自制设备评价多种防漏水泥浆体系的性能,并分析S90水泥浆体系防漏机制。结果表明:S90纤维水泥浆体系模拟堵塞3 mm孔板和缝板,5 MPa可承压10 min;在S90纤维水泥浆体系中加入特种黏结剂KE50后,模拟堵塞4 mm孔板和缝板,7 MPa可承压10 min;在水泥浆漏失过程中,S90体系中长纤维、短纤维和特种黏结剂形成致密的、牢固的纤维网格,减慢和阻止水泥浆体通过,在裂缝周围形成致密的滤饼后防漏效果显著;净浆、胶乳水泥浆和低密度水泥浆无防漏作用。 The lost circulation of slurry appears frequently when the vuggy formation and crack formation are encountered during cementing.Lost circulation of slurry will decrease the annular velocity,the displacement efficiency,performance of interface bonding and oil well productivity.The performances of several kinds of anti-lost-circulation slurry systems were evaluated by self-made equipment,and the anti-lost-circulation mechanisms of S90 slurry were analyzed.The results show that the S90 fiber slurry system could plug 3 mm hole and crack plate,and it can bear the pressure of 5 MPa for 10 minutes.The S90 slurry system added special bonding element KE50 could plug 4 mm hole and crack plate,and it can bear the pressure of 7 MPa for 10 minutes.During the process of lost circulation of slurry,the long fibers,short fibers and cement could form tight and fast fiber net,which can slow and prevent slurry passing.A tight filter cake is formed around fractures,so the anti-lost-circulation effect is good.While the clean slurry,latex slurry and low-density slurry have no anti-lost-circulation effect.
出处 《中国石油大学学报(自然科学版)》 EI CAS CSCD 北大核心 2012年第1期158-161,共4页 Journal of China University of Petroleum(Edition of Natural Science)
基金 国家'863'高新技术计划项目(2003AA327120) 江苏省企业博士基金项目(SBK200930213)
关键词 固井 油井水泥 纤维 水泥浆漏失 防漏性能 cementing oil-well cement fiber slurry lost circulation anti-lost-circulation performance
  • 相关文献

参考文献13

  • 1NICK Low,GERARD Daccord,JEAN-PHILIPPE Bedel.Designing fibered cement slurries for lost circulation ap-plications:case histories[R].SPE 84617,2003.
  • 2MCELFRESH,PAUL M,GO Boncan,et al.Applica-tions of foam cement[R].SPE 11203-MS,1982.
  • 3HARMS W M,FEBUS J S.Cementing of fragile-forma-tion wells with foamed cement slurries[J].Journal of Pe-troleum Technology,1985(7):1049-1057.
  • 4ROMERO S N,MONROY R R,JOHNSON C,et al.Preventing lost circulation by use of lightweight slurrieswith reticular systems:depleted reservoirs in SouthernMexico[J].SPE Drilling&Completion,21(3):185-192.
  • 5姚晓,吴叶成,樊松林,徐胜斌,高志南.F27A油井水泥防漏增韧剂的研究及应用[J].天然气工业,2004,24(6):66-69. 被引量:23
  • 6DAVID J Mack,DANIEL Kendrick.Low density,lostcirculation control slurry utilizing a unique LCM allowssuccessful,single-stage cementing of extremely long pro-duction intervals in the appalachian basin[R].SPE84838-MS,2003.
  • 7DON Hall.Bridging effectiveness of perlite for lightweight cements and lost circulation[R].SPE 141-G,1951.
  • 8MESSENGER J U,MCNIEL J S.Lost circulation correc-tive:time-setting clay cement[J].Society of PetroleumEngineers,1952,152(2):59-64.
  • 9FREDDY Mata,MANUEL Veiga.Crosslinked cementssolve lost circulation problems[R].SPE 90496-MS,2004.
  • 10LECOLIER E,HERZHAFT B,ROUSSEAU L,et al.Development of a nanocomposite gel for lost circulationtreatment[R].SPE 94686-MS,2005.

二级参考文献3

共引文献22

同被引文献93

引证文献7

二级引证文献30

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部