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Study on Mechanism of In-Depth Fluid Diversion by Gel Dam Placed with Horizontal Well Using X-ray CT

机译:用X射线CT用水平井放置凝胶坝深入流体转移机理研究

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Due to severe heterogeneity of thick positive rhythem reservoir and the gravity influence, the injected water channels and ineffectively cycles through its lower high permeability zones. For the whole reservoir, its sweep efficiency is relatively low and a huge amount of residual oil is enriched in its upper low permeable zones.The technique of in-depth fluid diversion by "gel dam" placed with horizontal well involves the injection of gel by horizontal or sidetracking wells drilled between the injection and production wells in the lower more permeable and strongly swept zones of thick positive rhythm reservoir, creating" gel dams". The injected water then will bypass the "gel dams"and be diverted into the upper low permeability zones where crude oil is relatively enriched. As a result, the sweep efficiency and oil recovery of the upper, low permeability zones can be both increased. In this paper, the EOR mechanism of the technique is studied by means of laboratory water flooding experiment combined with x-ray computer tomography(C T). The physical model, an artificial cementing heterogeneous model casted with epoxy resin on surface, is made based on the similarity criteria for water flooding process in 2D porous media.The water flooding processes in the physical model, before and after the "gel dam' is formed, are scanned by x-ray C T at different pore volume injected, which provides a visible means for studying the EOR mechanism of the technique, through observing the distribution feature of "gel dam', tracking the oil and water distribution, water flooding streamline’s change, fluid saturation distribution and its dynamic variation. The results of water flooding experiments indicate that, with this technique, the injected water is diverted into the upper low permeability layer to displace the remaining oil therein, and the sweep efficiency and oil recovery both increase significantly. After the "gel dam" formed, the ultimate oil recovery increases by 16.7%, its water cut falls to 62.8%, and its ascending velocity slowed down. With" gel dam"technique, gel can be placed in the deep reservoir zone to achieve in-depth fluid diversion.It will be a promising EOR method for thick positive rhythm reservoir.
机译:由于厚的圆形节律储存器的严重异质性和重力影响,注入的水通道和无效地通过其较低的高渗透区循环。对于整个水库,其扫描效率相对较低,大量的残余油在其上部低渗透区域中富集。通过水平井下放置的“凝胶坝”的深入流体导流技术涉及注入凝胶水平或侧面井在注射和生产井之间钻井,较低的厚实呈节奏水库的较低且强烈扫过的区域,创造“凝胶坝”。然后喷射的水将绕过“凝胶坝”并转移到相对富集原油的上低渗透区。结果,扫描效率和上部低渗透区的溢油可以增加。在本文中,通过实验室水泛洪水实验研究了该技术的EOR机理与X射线计算机断层扫描(C T)相结合。物理模型是基于2D多孔介质中的水淹过程的相似标准制造了用环氧树脂铸造的人工水泥异质模型。物理模型中的水利流程,“凝胶水坝”之前和之后通过在注射不同孔体积的X射线CT扫描形成的,这提供了用于研究该技术的EOR机理的可见装置,通过观察“凝胶坝”的分布特征,跟踪油水分布,水泛流线改变,流体饱和分布及其动态变化。水淹实验的结果表明,利用这种技术,将喷射的水转移到上低渗透层中以使其中剩余的油状物置换,并且扫描效率和溢油均显着增加。在“凝胶坝”形成之后,最终的采油率增加了16.7%,其水切口下降至62.8%,其上升速度减慢了。利用“凝胶坝”技术,凝胶可以放置在深水库区中以实现深入的流体转移。它将是厚实阳性节律储层的有希望的EOR方法。

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