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Study of New type of Temperature-resistant and Salt-tolerant surfactant for Polymer / surfactant Two-component flooding system

机译:聚合物/表面活性剂双组份驱油体系新型耐温耐盐表面活性剂的研究

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In this paper, a new active agent is investigated, which can be used in the condition of high temperature and high salinity, including the ability to reduce interfacial tension and interfacial tension stability, and the preparation of polymer surfactant flooding system with this active agent. Oil displacement experiment is operated by the physical simulation, the homogeneous and heterogeneous artificial cores with permeability of about l¿m2 are used in the experiment. The displacement characteristics have been verified. Experiment results demonstrate that under the conditions of high temperature and high salt, interfacial tension between crude and flooding system can dropped to the magnitude of 10-3 by this active agent, and it is able to stabilize within 10-3 for a long time; The polymer / surfactant binary flooding system prepared with this active agent is used in homogeneous and heterogeneous cores. It can enhance oil recovery greatly.
机译:本文研究了一种可以在高温高盐度条件下使用的新型活性剂,包括降低界面张力和界面张力稳定性的能力,以及用该活性剂制备聚合物表面活性剂驱替体系的方法。驱油实验是通过物理模拟进行的,实验中使用了渗透率约为lÂm2的均质和非均质人造岩心。位移特性已得到验证。实验结果表明,在高温高盐条件下,该活性剂可使原油与驱油体系之间的界面张力下降至10 -3 ,并能稳定在10°C以内。 -3 很长一段时间;用该活性剂制备的聚合物/表面活性剂二元驱替体系用于均质和非均质岩心。它可以大大提高采油率。

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