首页> 外文会议>SPE International Oilfield Scale Conference and Exhibition >Introducing Novel Chemistry for Scale Inhibitor Squeeze Treatments on the Heidrun Field - Challenges Faced and Lessons Learned
【24h】

Introducing Novel Chemistry for Scale Inhibitor Squeeze Treatments on the Heidrun Field - Challenges Faced and Lessons Learned

机译:介绍了对赫德伦田地抑制剂挤压治疗的新化学 - 面临的挑战和经验教训

获取原文

摘要

Heidrun is recognised as a challenging field for scale management due to the combination of water injection, high barium and clay content, and unconsolidated sandstone formations. A selection and qualification process for scale inhibitor squeeze in this field followed the standard laboratory testing protocols. A novel scale inhibitor chemistry was qualified and field trialled; however, introducing the new scale inhibitor chemistry to the field was more challenging than anticipated. The technical qualification was successful but the field trial resulted in lost productivity, halting field-wide implementation. The field trial started in Well I and indicated good scale protection but gave considerable loss of productivity. This paper presents the lessons learned through an extensive laboratory investigation to identify specific factors influencing the issues observed with the field trial. Furthermore, work completed to qualify a solution for iron-rich formations is described. It was determined that the inhibitor was leaching iron from minerals in the reservoir and forming an insoluble complex with the metal, particularly at mildly acidic pH. While elevated iron concentrations were seen in flow-back samples from other wells across the field, these did not approach the levels observed for Well I which was producing from a geological formation rich in iron-bearing minerals. The field trial was successful in less iron-rich formations and the product was implemented field-wide for such reservoir zones. The scale inhibitor was designed to offer strong chelation, a property suited to scale inhibition and reservoir retention, but this was also a significant factor in the productivity loss. This important finding dictated that Product A should be regarded as unsuitable for reservoir zones containing iron-rich minerals. Subsequently, an alternative scale inhibitor was technically qualified and has since been successfully field trialled and implemented in the iron-rich formation. This selection exercise for Heidrun posed challenges in terms of reservoir retention and iron compatibility for field-wide implementation of new chemistry. Overcoming these issues gave valuable insights for future qualifications of the novel scale inhibitor chemistry.
机译:由于注水,高钡和粘土含量和未溶胀的砂岩形成,Heidrun被认可为规模管理的具有挑战性的领域。该领域中规模抑制剂挤压的选择和资格过程遵循标准实验室检测协议。一种新的规模抑制剂化学是合格的和现场试验;然而,将新的规模抑制剂化学引入该领域比预期更具挑战性。技术资格成功,但实地试验导致生产力失去,暂停了整体领域的实施。现场试验始于我,并指出了良好的规模保护,但损失了很大的生产力。本文介绍了通过广泛的实验室调查来了解的经验教训,以确定影响与现场试验所观察到的问题的特定因素。此外,描述了完成以资格获得富含铁的形成的解决方案。确定抑制剂从储存器中的矿物浸出铁,并形成与金属的不溶性复合物,特别是在温和的酸性pH。虽然在来自该领域的其他孔的回流样品中看到升高的熨斗浓度,但这些不接近井I观察到的水平,其从富含铁矿物质的地质形成产生。现场试验在富含铁的地层中取得成功,该产品对于此类水库区域的宽阔宽。规模抑制剂旨在提供强烈螯合,这是一个适合抑制抑制和储层保留的性质,但这也是生产率损失的重要因素。这一重要的发现决定了产品A应该被视为不适合含有富含铁矿物的水库。随后,替代规模抑制剂在技术上合格,并且已经成功地在富含铁的形成中试验和实施。这种选择练习在储层保留和铁路兼容性方面提出挑战,以实现新化学的全面实施。克服这些问题对新型规模抑制剂化学的未来资格提供了宝贵的见解。

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