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Propagation of Regular HCI Acids in Carbonate Rocks: The Impact of an In Situ Gelled Acid Stage

机译:普通HCl酸在碳酸盐岩中的传播:原位胶凝酸阶段的影响

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摘要

Recent laboratory and field studies indicated that polymer-based in situ gelled acids can cause formation damage. Coreflood experiments using single-stage and multistage acids were conducted at 250 °F. 15 wt. % regular HCI and 5 wt. % in situ gelled acid-based on Fe(III) as a crosslinker were the acids that were used in this study. Propagation of acids and crosslinker inside 20 in. long cores was examined for the first time in detail. Stage volume and injection rate, which were the parameters that affect the propagating of various chemical species, were examined. Samples of the core effluent were collected and the concentrations of calcium, crosslinker, and acid were measured. Material balance was conducted to determine the amount of cross-liker that retained in the core. The results show that in situ gelled acid should be pumped at low injection rates. In situ gelled acid at low injection rate instantaneously plugged the tip of the wormhole and did not create additional wormholes inside the core. Therefore, when the final regular acid stage bypassed the gel, it started to propagate from nearly the last point that the first stage ended. In site gelled acid stage volume should not exceed 0.5 PV. No benefits were gained by increasing the volume of in situ gelled acids. Retention of total iron in the core increased in multistage acid treatments, especially at low acid injection rates.
机译:最近的实验室和现场研究表明,基于聚合物的原位胶凝酸会造成地层破坏。使用单级和多级酸的岩心驱油实验在250°F下进行。 15重量%普通HCl和5 wt。基于Fe(III)作为交联剂的原位胶凝酸百分比是本研究中使用的酸。首次详细检查了酸和交联剂在20英寸长核中的传播。检查了舞台体积和注入速率,这是影响各种化学物质繁殖的参数。收集核心废水样品,并测量钙,交联剂和酸的浓度。进行材料平衡以确定保留在核心中的交叉点胶的数量。结果表明,应以低注入速率泵送原位胶凝酸。低注入速率的原位胶凝酸会立即堵塞虫洞的尖端,并且不会在岩心内部产生其他虫洞。因此,当最后的规则酸阶段绕过凝胶时,它从第一阶段结束的最后一点开始扩散。现场胶凝酸阶段的体积不应超过0.5 PV。通过增加原位胶凝酸的体积无法获得任何好处。在多级酸处理中,尤其是在低酸注入速率下,铁芯中总铁的保留量增加了。

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  • 来源
    《Journal of Energy Resources Technology》 |2011年第2期|p.023101.1-023101.9|共9页
  • 作者单位

    Petroleum Engineering Department Texas A&M University 507 Richardson Building, College Station, TX 77843;

    Petroleum Engineering Department Texas A&M University 507 Richardson Building, College Station, TX 77843;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-18 00:30:14

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