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Taking advantage of injectivity decline for improved recovery during waterflood with horizontal wells

机译:利用注入量下降的优势,在水平井注水期间提高采收率

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Injectivity formation damage with waterflooding using sea/produced water has been widely reported in the North Sea, the Gulf of Mexico and the Campos Basin in Brazil. The damage is due to the capture of solid and/or liquid particles by reservoir rock that consequently leads to the permeability decline. Another reason for the permeability decline is the formation of a low permeable external filter cake.However, moderate injectivity decline is not too damaging for a waterflood project with long horizontal injectors, where the initial injectivity index is high. In this case, the injection of raw or poorly treated water may significantly reduce the cost of water treatment, which is a cumbersome and expensive procedure in offshore projects.In this paper we investigate the effects of injected water quality on waterflooding using horizontal wells. An analytical model for injectivity decline, which accounts for particle capture and a low permeable external filter cake formation, has been implemented into black oil reservoir simulator. It was found that induced injectivity damage results in a noticeable reduction of water cut and in increased (although delayed) sweep efficiency.
机译:在北海,墨西哥湾和巴西的坎波斯盆地,已广泛报道了使用海水/采出水注水对注入地层造成的损害。损害是由于储层岩石对固体和/或液体颗粒的捕获,从而导致渗透率下降。渗透率下降的另一个原因是低渗透性的外部滤饼的形成,但是,对于初始注入指数较高的水平注水器较长的注水项目,中等注入率下降不会造成太大损害。在这种情况下,注入原水或处理不当的水可能会大大降低水处理成本,这在海上项目中是一个繁琐而昂贵的过程。本文研究了注入水质量对使用水平井注水的影响。黑油油藏模拟器已实现了一种用于注入量下降的分析模型,该模型考虑了颗粒捕获和低渗透性外部滤饼形成。已经发现,诱导的喷射损伤导致含水率的显着降低和增加的(尽管是延迟的)吹扫效率。

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