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Displacement efficiency in the water flooding process in fracture–vuggy reservoirs

机译:裂隙-凹槽水库水驱过程的位移效率

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摘要

AbstractTo determine how fracture–vuggy structure, pressure, and injection–production mode influence displacement efficiency in the water flooding process in fracture–vuggy reservoirs, two types of models were built based on the characteristic of such reservoir: two fracture models with different fracture apertures and two fracture–vuggy models with different sizes of vugs. A series of two-phase fluid flow experiments was conducted to study oil and water distribution as well as flow pattern in the water flooding process. Results show that displacement efficiency is significantly influenced by injection–production mode and injection pressure. By contrast, its relationship with the size of vugs is insignificant. Under the same injection–production mode, high-to-low recovery that corresponds to model type includes the small fracture, large fracture, small vug, and large vug models. Under the same pore volume multiple, high-to-low recovery that corresponds to model includes the small fracture, small vug, large fracture, and large vug models.
机译:摘要为确定裂缝-凹槽结构、压力和注产模式如何影响裂缝-凹槽油藏水驱过程的位移效率,基于裂缝-凹槽特征,构建了2种不同裂缝孔径的裂缝模型和2种不同尺寸裂缝的裂缝模型。开展了一系列两相流体流动实验,研究了水驱过程中的油水分布和流动模式。结果表明,喷塑生产模式和喷塑压力对驱赶效率有显著影响。相比之下,它与vugs大小的关系是微不足道的。在相同的注塑生产模式下,与模型类型对应的高到低回收率包括小裂缝、大裂缝、小凹槽和大凹槽模型。在相同的孔隙体积倍数下,对应的从高到低的回收率模型包括小裂缝、小裂缝、大裂缝和大裂缝模型。

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