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A mathematical model and numerical simulation of waterflood induced dynamic fractures of low permeability reservoirs

机译:低渗透油藏注水动态裂缝数学模型与数值模拟

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Based on abundant data of low permeability oilfields, dynamic fractures were conceptualized and their evolution, including cracking, extending and closing, were analyzed. A new model that describes the dynamic changes of fracture shape and properties was established and a software module was developed. The simulation results show that dynamic fractures cracked once the injection pressure was higher than the formation fracture pressure, and then extended continually, which showed a periodic variation relationship with the formation pressure and the injection volume. After the moderate injection, dynamic fractures remained the open status in a relatively long time, but then the whole fractures tended to close quickly, and these phenomena indicate that the dynamic fractures were significantly affected by the production condition. The presence of dynamic fractures provides a channel for the injection water. With the gradual extension of dynamic fractures, the injection water forms a narrow range of displacement, which leads to the severe imbalance of water flooding, aggravates the heterogeneity of low permeability reservoirs, and significantly affects the water cut rising rules of wells in all directions. However, dynamic fractures also show a positive effect on the establishment of an effective displacement system between the injection wells and the production wells.
机译:基于低渗透油田的丰富数据,对动态裂缝进行了概念化,并分析了裂缝的演化,包括裂缝,扩展和闭合。建立了描述裂缝形状和特性动态变化的新模型,并开发了软件模块。模拟结果表明,动态压裂一旦注入压力高于地层压裂压力就破裂,然后连续扩展,这与地层压力和注入量呈周期性变化关系。适度注入后,动态裂缝在相当长的时间内仍保持开放状态,但随后整个裂缝趋于迅速闭合,这些现象表明动态裂缝受生产条件的影响很大。动态裂缝的存在为注入水提供了通道。随着动态裂缝的逐渐扩展,注水形成的驱替范围狭窄,导致注水严重失衡,加剧了低渗透油藏的非均质性,并显着影响了各个方向的含水率上升规律。但是,动态裂缝也显示出对在注入井和生产井之间建立有效驱替系统的积极影响。

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