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深井不同钻井完井液对渗流能力影响评价及预防对策
引用本文:牛晓,熊汉桥,何仲,潘丽娟,徐鹏. 深井不同钻井完井液对渗流能力影响评价及预防对策[J]. 科学技术与工程, 2014, 14(18)
作者姓名:牛晓  熊汉桥  何仲  潘丽娟  徐鹏
作者单位:中石化西北油田分公司,西南石油大学石油工程学院,中石化西北油田分公司,中石化西北油田分公司,西南石油大学石油工程学院
摘    要:在深井钻完井过程中,钻井完井液损害造成渗流能力降低是储层最重要的损害机理。选用深井钻井现用钻井液、优化钻井液对储层天然岩样、人造裂缝岩样的损害实验,以及钻井完井液侵入评价实验共同揭示研究区块储层损害特征。分析两类固相堵塞,固-液、液-液配伍性,毛管现象及工程因素对于储层渗流能力的影响;并提出多级架桥暂堵技术、调整钻井液配伍性能等对策提高地层渗流能力,为钻井完井决策提供参考。

关 键 词:渗流能力  钻井液损害  侵入深度  多级架桥  深井  人造裂缝
收稿时间:2013-12-19
修稿时间:2014-01-28

Estimation on Effect of Different Drilling Completion Fluid on Percolation Ability in Deep Well and Prevention Measure
NIU Xiao,XIONG Han-qiao,HE Zhong,PAN Lijuan and XU Peng. Estimation on Effect of Different Drilling Completion Fluid on Percolation Ability in Deep Well and Prevention Measure[J]. Science Technology and Engineering, 2014, 14(18)
Authors:NIU Xiao  XIONG Han-qiao  HE Zhong  PAN Lijuan  XU Peng
Affiliation:College of Petroleum Engineering,Southwest Petroleum University,Chengdu,Sinopec Northwest Oilfield Branch,Sinopec Northwest Oilfield Branch,College of Petroleum Engineering,Southwest Petroleum University,Chengdu
Abstract:In the process of deep well drilling and completion, reduction of percolation ability resulted from drilling completion fluid damage is the most important reservoir damage mechanism. This article selects oil field drilling fluid and optimized drilling fluid to do damage experiments and invasion experiment of drilling and completion fluid, experimental cores select natural cores and artificial fracture cores. The two experiments reveal reservoir damage characteristics of research block. The article also analysis effect on the reservoir seepage ability of two kinds of solid plugging, solid-liquid and liquid-liquid compatibility, capillary phenomenon and engineering factors. To improve formation of percolation ability, the paper present multi-level bridge temporary plugging technology and adjust the drilling fluid compatibility performance, these measures would provide reference for drilling completion decision.
Keywords:percolation ability   drilling fluid damage   invasion depth   multi-level bridging   deep well   artificial fracture
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