首页> 外文会议>Abu Dhabi International Petroleum Exhibition Conference >Design of Economical Polymer and Surfactant-Polymer Processes in High Temperature Carbonated Um Gudair Kuwaiti Field
【24h】

Design of Economical Polymer and Surfactant-Polymer Processes in High Temperature Carbonated Um Gudair Kuwaiti Field

机译:高温碳酸庵甘地科威特田的经济聚合物和表面活性剂 - 聚合物工艺设计

获取原文

摘要

Um Gudair Minagish Oolite reservoir (UGMO), in Kuwait, is a high temperature mature carbonate field. It is also naturally water-flooded by a strong bottom active aquifer. Specifics challenges for Polymer (P) or Surfactant-Polymer (SP) chemical enhanced oil recovery (cEOR) are faced in high temperature carbonated reservoirs such as UGMO's field. P and SP process selection prior multiwell evaluation is addressed by a well-crafted laboratory approach. This involves extensive laboratory work including coreflood experiments to select the most effective processes in terms of oil recovery and cost-effectiveness. Softened sea water through nanofiltration two passes was considered as the most appropriate water source to be used in a SP cEOR process. Polymer was selected based on classical workflow relying on bulk measurements such as solubility, stability and viscosity, and on coreflooding experiments to characterize polymer injectivity and in-depth propagation. The selected polymer was also tested for compatibility with surfactant. SP formulation was designed and evaluated following a dedicated workflow in order to achieve low interfacial tension (IFT), high solubility, oil recovery and promising economics in reservoir conditions. The most favorable SP formulation regarding economics, surface facility modifications, operating costs and performances were evaluated through coreflood tests. The best SP formulation was selected based on chemicals in-depth propagation in reservoir core, incremental oil recovery and surfactant adsorption. The process was then optimized through additional corefloods to reduce chemicals dosage while keeping high oil recovery performances. Finally, the robustness towards both, rock and field variation conditions, was tested and confirmed. P and SP process were designed and proved to be both promising for UGMO's field. SP while using more chemicals than P process leads to a far better oil recovery as final oil saturation is decreased from 42% (P process) to 11% (SP process). As surfactant adsorption is a key parameter for both SP process efficiency and cost efficiency, several surfactant adsorption mitigation strategies were tested. Injection of a non-ionic surfactant after the main surfactant flood proved to efficiently manage surfactant adsorption despite of the very challenging conditions, allowing to reach very low adsorption level of 60 μg/g. Reservoir simulations showed afterwards that both P or SP process designed were economical at commercial pilot scale. Applied laboratory study on high temperature carbonate UGMO oil reservoir in Kuwait provides useful insights that can be used on other chemical EOR projects in such challenging conditions. This allows to select the most appropriate P or SP process and injection strategy while having reduced surfactant adsorption to very low levels in highly challenging conditions and enhanced profitability.
机译:UM Gudair迷你鲕粒水库(Ugmo),在科威特是一种高温成熟的碳酸盐田。它也是由强大的底部活性含水层自然淹没。具体细节(P)或表面活性剂 - 聚合物(SP)化学增强的油回收(CEOR)面临高温碳酸储层等挑战,如UGMO领域。 P和SP流程选择先前的多维评估是通过精心制作的实验室方法解决的。这涉及广泛的实验室工作,包括CoreFlood实验,以在石油回收和成本效益方面选择最有效的过程。通过纳米滤水软化的海水两次通过被认为是在SP CEOR过程中使用的最合适的水源。基于诸如溶解性,稳定性和粘度的散粒测量以及核开采实验,基于诸如溶解度,稳定性和粘度的典型工作流来选择聚合物。还测试所选择的聚合物以与表面活性剂相容。在专用的工作流程之后设计和评估了SP配方,以实现储层条件下的低界面张力(IFT),高溶解度,石油回收和有前途的经济学。通过CoreFlood测试评估了关于经济学,表面设施修改,运营成本和性能的最有利的SP配方。基于储层核心,增量油回收和表面活性剂吸附的化学品,选择最佳SP配方。然后通过额外的内荷优化该方法,以减少化学品剂量,同时保持高油回收性能。最后,测试并确认了对岩石和场变异条件的鲁棒性。设计并证明了P和SP工艺对Ugmo的领域有望。使用比P工艺更多化学品的虽然使用更多化学品,但由于最终的油饱和度从42%(P过程)降低至11%(SP工艺),因此可以更好地产生更好的油恢复。由于表面活性剂吸附是SP工艺效率和成本效率的关键参数,测试了几种表面活性剂吸附缓解策略。在主表面活性剂洪水中注射非离子表面活性剂,证明尽管有挑战性的条件,但尽管有效地管理表面活性剂吸附,但允许达到60μg/ g的非常低的吸附水平。水库模拟显示后,设计的P或SP工艺在商业飞行员规模上经济。在科威特的高温碳酸盐盐储油器中的应用实验室研究提供了有用的见解,可用于其他具有挑战性的条件下的其他化学EOR项目。这允许选择最合适的P或SP过程和注射策略,同时在高度挑战性条件下将表面活性剂吸附降低到极低水平,并提高盈利能力。

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