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天然裂缝多孔介质中流体运移的流线模拟 被引量:7
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作者 左立华 于伟 +2 位作者 苗继军 VARAVEI Abdoljalil sepehrnoori kamy 《石油勘探与开发》 SCIE EI CAS CSCD 北大核心 2019年第1期125-131,共7页
为了研究天然裂缝在多孔介质中的作用,将嵌入型离散裂缝模型(EDFM)与流线模拟方法相结合,对天然裂缝进行模拟,计算流体在基质和裂缝中的流动轨迹及流动时间。通过分析具有不同裂缝网络的油藏见水时间和驱扫体积的差别,研究裂缝导流能力... 为了研究天然裂缝在多孔介质中的作用,将嵌入型离散裂缝模型(EDFM)与流线模拟方法相结合,对天然裂缝进行模拟,计算流体在基质和裂缝中的流动轨迹及流动时间。通过分析具有不同裂缝网络的油藏见水时间和驱扫体积的差别,研究裂缝导流能力、裂缝数目和裂缝位置对流体流动轨迹和流动时间的影响。研究表明,在其他条件相同的情况下,与无裂缝均质油藏相比,裂缝性油藏中水驱见水时间会快30%,而驱扫体积会少10%。虽然增加单条裂缝可以加速见水时间,减少驱扫体积,但增加更多裂缝却不一定得到相同效果。水驱效果还跟裂缝的走向和位置有关系,不同的走向和位置可以导致见水时间相差20%,而驱扫体积相差9%。裂缝长度越短,对于流体流动轨迹和流动时间的影响越小。裂缝的位置对驱扫效率影响较大,单条裂缝的位置变动可以导致驱扫体积变化1%。 展开更多
关键词 多相流 水驱 嵌入型离散裂缝模型 流线模拟 天然裂缝
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Streamline modeling of fluid transport in naturally fractured porous medium
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作者 ZUO Lihua YU Wei +2 位作者 MIAO Jijun VARAVEI Abdoljalil sepehrnoori kamy 《Petroleum Exploration and Development》 2019年第1期130-137,共8页
To better understand the roles natural fractures play in porous media, an embedded discrete fracture model and streamline modeling method were combined to model natural fractures and compute the flow trajectory and ti... To better understand the roles natural fractures play in porous media, an embedded discrete fracture model and streamline modeling method were combined to model natural fractures and compute the flow trajectory and time of fluid in matrix and fractures systems. The effects of fracture conductivity, number of fractures and fracture locations on fluid flow trajectory and time were examined through analyzing the differences in water breakthrough time and sweeping volume of reservoirs with different fracture networks. When other conditions are the same, compared with homogeneous reservoir without fractures, the fractured reservoir has water breakthrough time 30% sooner and swept volume 10% smaller. Although increase of single fracture can lead to faster water breakthrough and smaller swept volume, adding more fractures wouldn't necessarily reach the same effect. The effect of water flooding is also related to the strike and position of fractures. Fractures in different strikes and positions can result in 20% discrepancy in water breakthrough time and 9% gap in swept volume. The shorter the fracture, the less its effect on fluid flow trajectory and time will be. The position of fracture has a strong influence on sweeping efficiency, and the change of one fracture position could bring about 1% variation in swept volume. 展开更多
关键词 MULTIPHASE flow water FLOODING embedded DISCRETE FRACTURE model STREAMLINE simulation natural FRACTURE
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