The Combined Flooding of Dispersed Particle Gel and Surfactant for Conformance Control and EOR: From Experiment to Pilot Test

Xia Yin, Tianyi Zhao, J. Yi
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Abstract

The water channeling and excess water production led to the decreasing formation energy in the oilfield. Therefore, the combined flooding with dispersed particle gel (DPG) and surfactant was conducted for conformance control and enhanced oil recovery in a high temperature (100-110°C) high salinity (>2.1×105mg/L) channel reservoir of block X in Tahe oilfield. This paper reports the experimental results and pilot test for the combined flooding in a well group of Block X. In the experiment part, the interfacial tension, emulsifying capacity of the surfactant and the particle size during aging of DPG were measured, then, the conformance control and enhanced oil recovery performance of the combined flooding was evaluated by core flooding experiment. In the pilot test, the geological backgrounds and developing history of the block was introduced. Then, an integrated study of EOR and conformance control performance in the block X are analyzed by real-time monitoring and performance after treatment. In addition, the well selection criteria and flooding optimization were clarified. In this combined flooding, DPG is applied as in-depth conformance control agent to increase the sweep efficiency, and surfactant solution slug following is used for improve the displacement efficiency. The long term stability of DPG for 15 days ensures the efficiency of in-depth conformance control and its size can increase from its original 0.543μm to 35.5μm after aging for 7 days in the 2.17×105mg/L reservoir water and at 110°C. In the optimization, it is found that 0.35% NAC-1+ 0.25% NAC-2 surfactant solution with interfacial tension 3.2×10-2mN/m can form a relatively stable emulsion easily with the dehydrated crude oil. In the double core flooding, the conformance control performance is confirmed by the diversion of fluid after combined flooding and EOR increases by 21.3%. After exploitation of Block X for 14 years, the fast decreasing formation energy due to lack of large bottom water and water fingering resulted in a decreasing production rate and increasing watercut. After combined flooding in Y well group with 1 injector and 3 producers, the average dynamic liquid level, daily production, and tracing agent breakthrough time increased, while the watercut and infectivity index decreased. The distribution rate of injected fluid and real-time monitoring also assured the conformance control performance. The oil production of this well group was increased by over 3000 tons. Upon this throughout study of combined flooding from experiment to case study, adjusting the heterogeneity by DPG combined with increasing displacement efficiency of surfactant enhanced the oil recovery synergistically in this high salinity high temperature reservoir. The criteria for the selection and performance of combined flooding also provides practical experiences and principles for combined flooding.
分散型颗粒凝胶与表面活性剂联合驱调稠度和提高采收率:从实验到中试
水窜和产水过剩导致油田地层能量下降。为此,在塔河油田X区块高温(100 ~ 110℃)高矿化度(>2.1×105mg/L)的通道油藏中,采用分散型颗粒凝胶(DPG)与表面活性剂联合驱,实现了调顺性和提高采收率。本文报道了x区块某井组联合驱的实验结果和先导试验,实验部分测量了DPG老化过程中表面活性剂的界面张力、乳化能力和粒径,并通过岩心驱油实验评价了联合驱的调优和提高采收率效果。在先导试验中,介绍了该区块的地质背景和开发历史。然后,通过实时监测和处理后的性能,对X区块的提高采收率和调优性能进行了综合研究。此外,还明确了选井标准和驱油优化。在该联合驱中,采用DPG作为深度调顺剂来提高波及效率,采用表面活性剂溶液段塞跟随来提高驱替效率。DPG具有15天的长期稳定性,在2.17×105mg/L的储层水、110℃条件下时效7天后,DPG的尺寸可由原来的0.543μm增加到35.5μm。优化后发现,0.35% NAC-1+ 0.25% NAC-2表面活性剂溶液,界面张力3.2×10-2mN/m,可与脱水原油形成相对稳定的乳状液。在双岩心驱油中,驱油和提高采收率相结合后的流体导流效果提高了21.3%,从而证实了双岩心驱油的一致性。X区块经过14年的开发,由于缺乏大底水和水指状,地层能量快速下降,导致产量下降,含水增加。Y井组1注3采联合驱后,平均动态液面、日均产量、示踪剂突破时间均有所增加,含水和感染指数均有所下降。注入流体的分布速率和实时监测也保证了一致性控制的效果。该井组增产3000多吨。在从实验到实例的整个联合驱研究过程中,DPG调节非均质性与表面活性剂驱替效率的提高协同提高了该高矿化度高温油藏的采收率。联合驱的选择和性能标准也为联合驱提供了实践经验和原则。
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