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Experimental Evaluation of the Shielded Temporary Plugging System Composed of Calcium Carbonate and Acid-Soluble Preformed Particle Gels(ASPPG) for Petroleum Drilling

机译:石油钻井碳酸钙和酸溶性预成型颗粒凝胶(ASPPG)构成的屏蔽临时堵漏系统的实验评价

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摘要

To protect oil and gas reservoirs during drilling, shielded temporary plugging technology has long been the key to oil and gas well drilling operations. Hard ultrafine calcium carbonate (CaCO_(3)) has been widely used to effectively plug the storage, and to remove the plugging in time after drilling and completion effectively. Ultrafine calcium carbonate has the advantages of high strength, adjustable particle size, excellent bridging and plugging effect, and rapid and full reaction with acid. However, the bridging effect of hard particles usually cannot achieve complete sealing. This study intended to use acid-soluble preformed particle gels (ASPPG) as a collaborative plugging material. ASPPG is a soft material that can form deformation filling and self-decomposition. The research results show that the “superfine calcium carbonate + ASPPG” synergistic plugging system can significantly improve the plugging strength of the drilling fluid. In addition, the system can completely react or self-degrade in the process of hydrochloric acid plugging removal, causing very little damage to the formation. Besides, as the ASPPG particle concentration increases or the particle size decreases, the plugging strength will gradually increase. Moreover, the system can also be applied to high temperature (90 °C) formation conditions. The above experimental research results can provide a research foundation for the pilot application of the shielded temporary plugging drilling fluid technology based on the “hard particles + soft particles” synergistic plugging effect.
机译:为了保护钻井过程中的石油和天然气储层,屏蔽临时堵漏技术长期以来一直是石油和天然气钻井作业的关键。硬含量超细碳酸钙(Caco_(3))已被广泛用于有效地堵塞储存,并在钻井和完成后立即拆下堵塞。超细碳酸钙具有高强度,可调节粒径,优异的桥接和堵塞效果,且与酸的快速和完全反应。然而,硬颗粒的桥接效果通常不能达到完全密封。该研究旨在使用酸可溶性预成型颗粒凝胶(ASPPG)作为协同堵塞材料。 asppg是一种柔软材料,可以形成变形填充和自分解。研究结果表明,“超细碳酸钙+ APPG”协同堵塞系统可以显着提高钻井液的堵塞强度。此外,该系统可以在盐酸堵塞的过程中完全反应或自我降解,从而对地层造成很少损害。此外,随着ASPPG颗粒浓度的增加或粒度降低,堵塞强度将逐渐增加。此外,该系统也可以应用于高温(90℃)的形成条件。上述实验研究结果可以为基于“硬颗粒+软颗粒”协同堵塞效果来为屏蔽临时堵漏钻井液技术的试验应用提供研究基础。

著录项

  • 来源
    《Energy & fuels》 |2020年第11期|14023-14033|共11页
  • 作者单位

    Sinopec Northwest Oilfield Company;

    Sinopec Northwest Oilfield Company;

    China University of Petroleum-Beijing at Karamay;

    Sinopec Northwest Oilfield Company;

    Sinopec Northwest Oilfield Company;

    China University of Petroleum-Beijing at Karamay;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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