首页> 外文会议>SPE Western Regional Meeting >New Viscoelastic Surfactant with Improved Diversion Characteristics for Carbonate Matrix Acidizing Treatments
【24h】

New Viscoelastic Surfactant with Improved Diversion Characteristics for Carbonate Matrix Acidizing Treatments

机译:新型粘弹性表面活性剂,具有改进的碳酸酯基质酸化处理的转移特征

获取原文

摘要

Viscoelastic surfactants (VES) have been used to replace polymer-based fluids as effective, cleaner, and non-damaging viscofying carriers in frac-packing, acid fracturing, and matrix acidizing. However, several limitations challenge the use of VES-based fluids including: thermal instability, incompatibility with alcohol-based corrosion inhibitor, and intolerance to the presence of contaminating iron. This work introduces a new VES-based acid system for diversion in matrix acidizing that exhibits excellent thermal stability and diversion performance in both low-and high-temperature conditions. Rheology measurements were conducted on spent VES-acid system as a function of temperature (77-300°F) at a pH of 4-5. The effect of acidizing additives on the VES viscosity was investigated. The additives included a corrosion inhibitor, non-emulsifier, iron-chelating agent, and iron-reducing agent. Single and dual coreflood experiments were performed using limestone core samples with an initial permeability range of 4-200 md and a permeability contrast of 1.5-55. Post CT-scan imaging was conducted to investigate the wormhole topography. The diversion characteristic of the new VES in the dual coreflood experiments was evaluated by the structure and the extent of wormhole propagation in the low-permeability core. Rheological data for 15 wt% HC1 spent VES-solutions showed a maximum viscosity of 200-800 over a temperature range of 150-170°F, depending on the VES concentration in the sample. Without acidizing additives, a minimum of 50 cP was obtained at 195, 230, 250, and 275°F at 4, 5, 6, and 8 vol% of the VES in solution, respectively. None of the tested acidizing additives had a negative impact on the VES viscosity. At 8% VES loading, the acidizing package was optimized such that a minimum of 75 cP was obtained at 300°F. Dual coreflood experiments were conducted at 150 and 250°F, and the results proved the ability of the proposed VES to divert efficiently in limestone formations. Single coreflood experiments also confirmed these results. Coreflood data indicated that a range of permeability contrast of 4-10 is the optimum for diversion ability in terms of the final permeability enhancement of the low-permeability cores. The results revealed 18.6, 45.6, 82%, and infinity when the permeability contrast was 28.3, 14.4, 6. 3, 1.63, respectively. A dual coreflood experiment was conducted for two cores with a permeability contrast of 1.6 at 150°F. The VES-acid system in the presence of all acidizing additives exhibited divergent performance that exceeded the performance of the VES in the absence of additivies. These results prove the stable performance of the VES and the enhancement in viscosity response after addition of both the iron-control agent and the non-emulsfier, which resulted in less acid leakoff and better wormhole structure.
机译:粘弹性表面活性剂(VES)已被用于将聚合物基流体替换为FRAC包装,酸性压裂和基质酸化中的有效,更清洁和非损坏的Viscofying载体。然而,几个限制挑战使用基于VES的流体,包括:热不稳定性,与醇类腐蚀抑制剂的不相容性,以及对污染铁的存在的不耐受性。这项工作介绍了一种新的VES型酸系统,用于转移基质酸化,在低温和高温条件下表现出优异的热稳定性和导流性能。在CH值为4-5的温度(77-300°F)的函数上进行流变学测量。研究了酸化添加剂对VES粘度的影响。添加剂包括腐蚀抑制剂,非乳化剂,铁螯合剂和冰还原剂。使用初始渗透范围为4-200md的初始渗透率和1.5-55的渗透性对比进行单核核心实验。进行CT扫描成像后进行CT扫描成像以研究虫洞地形。通过在低渗透核心中的蠕虫孔繁殖的结构和虫洞传播的结构和程度评估了双重内核实验中新ves的转移特征。 15wt%HC1的流变数据在150-170°F的温度范围内显示出200-800的最大粘度,这取决于样品中的VES浓度。在不酸化添加剂的情况下,在195,230,250和275°F中,在4,5,6和8Vol%的溶液中的VES中获得至少50cP。没有测试的酸化添加剂对VES粘度产生负面影响。在8%VES负载下,优化酸化包装,使得在300°F下获得至少75cc CP。双重核心实验在150和250°F下进行,结果证明了所提出的VES在石灰石形成中有效转移的能力。单一内核实验也证实了这些结果。 CoreFlood数据表明,4-10的渗透率对比度是在最终渗透性核心的最终渗透性增强方面的最佳转移能力。结果显示出18.6,45.6,82%和无穷大,当渗透率对比度分别为28.3,14.4,6.3,1.63。对两个芯进行双核心实验,其渗透率对比为1.6,在150°F处。在所有酸化添加剂的存在下,Ves-酸系统表现出在没有添加剂的情况下超过VES的发散性能。这些结果证明了在加入铁控制剂和非乳剂后粘度反应的稳定性和增强,导致耐酸泄漏和更好的虫洞结构。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号