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溶胶-凝胶型 MgO 纳米材料抑砂技术

吴建平 梁伟 夏伯儒 贾维霞 陈雪

石油钻采工艺2016,Vol.38Issue(4):536-539,4.
石油钻采工艺2016,Vol.38Issue(4):536-539,4.DOI:10.13639/j.odpt.2016.04.025

溶胶-凝胶型 MgO 纳米材料抑砂技术

Sand-control techniques with sol-gel MgO nanometer material

吴建平 1梁伟 1夏伯儒 1贾维霞 1陈雪1

作者信息

  • 1. 中国石化胜利油田分公司石油工程技术研究院
  • 折叠

摘要

Abstract

Migration of fine grains in reservoir formations with high clay and siltstone contents may plug, erode, and damage sand barriers, and cause significant reduction of fluid productivity. Absorption efficiency of various nanometer materials have been reviewed by using relevant test data and calculation results to pick out the sol-gel MgO nanometer material as coated proppant in gravel-packing layers. With absorption efficiency of 78.85% for fine grains, turbidity of its outflow fluid is only 5.5% of that obtained by using cationic sand control agent, and sand content in its out-flow fluid is only approximately 9.3% of that contained in fluid out of cationic sand control agents, which suggests its sand consolidating performance is far better than conventional cationic sand control agents currently used in oilfields.After it was applied in Well LNJ501 of the Shengli Oilfield, sand content of the produced fluid was less than 0.01%, and the fluid productivity of the well was 3.42 times of that before the treatment, and effective production time of the well was 389 d, which indicates the sol-gel MgO nanometer material can effectively enhance fluid productivity and extend effective sand control period.

关键词

粉细砂岩/纳米材料/MgO/砾石充填/涂层/抑砂

Key words

fine sandstone/nanometer material/MgO/gravel packing/coating/sand control

分类

能源科技

引用本文复制引用

吴建平,梁伟,夏伯儒,贾维霞,陈雪..溶胶-凝胶型 MgO 纳米材料抑砂技术[J].石油钻采工艺,2016,38(4):536-539,4.

石油钻采工艺

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