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首页> 外文期刊>Advances in Petroleum Exploration and Development >Influence of Filling Medium on Water Injection in Fracture-Vuggy Reservoir
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Influence of Filling Medium on Water Injection in Fracture-Vuggy Reservoir

机译:缝隙型储层充填介质对注水的影响

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The Tahe oilfield is characterized with high degree of filling medium in an underground caves and shortage of bottom water in some unites. In addition, it has poor oil displacement effect with water injection, and low recovery rate. Considering geological interpretation results, the cave filling models with different filling mediums are designed. Through physical simulation experiments, the displacement mechanism between the un-filled areas and the filling medium were fully studied. Meanwhile, the effect of filling medium’s wettability, pore size and fluid elastic energy on the oil-water displacement efficiency were clarified. The results showed that: In the process of oil-water displacement, the capillary resistance in the oil-wet filling medium may hinder the oil-water gravity differentiation, making it impossible for the oil in the filling medium to be replaced effectively, so there is a large amount of remaining oil in the filling medium. The stronger the oil wettability of the filing medium and the smaller pore size, the lower the displacement efficiency. Increasing injecting pressure could only increase the formation energy and improve oil production at the beginning, but it could not improve oil displacement efficiency in filling medium. Injection of surfactant could reduce the oil-water interfacial tension and improve the oil phase utilization degree of the filling medium effectively. Field application has the same results with the experiment, so the surfactant injection is an EOR method to improve oil displacement for fracture-cave reservoir with high degree of filling medium.
机译:塔河油田的特征是地下溶洞中的充填度高,某些地区的地下水不足。另外,注水驱油效果差,回收率低。考虑地质解释结果,设计了不同充填介质的溶洞充填模型。通过物理模拟实验,充分研究了未填充区域与填充介质之间的位移机理。同时,阐明了填充介质的润湿性,孔径和流体弹性能对油水驱替效率的影响。结果表明:在油水驱替过程中,油湿填充介质中的毛细阻力可能会阻碍油水重力分流,使填充介质中的油无法被有效置换,因此是填充介质中大量残留的油。填充介质的油润湿性越强,孔径越小,驱替效率越低。注入压力的增加只能增加地层能量,并在开始时提高采油量,而不能提高填充介质中的驱油效率。注入表面活性剂可以降低油水界面张力,有效提高填充介质的油相利用率。现场应用与实验结果相同,因此表面活性剂注入是提高裂缝介质储量高的裂缝洞型油藏驱油方法。

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