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首页> 外文期刊>Journal of Petroleum Science & Engineering >Physical simulation of waterflooding development in large-scale fractured-vuggy reservoir considering filling characteristics
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Physical simulation of waterflooding development in large-scale fractured-vuggy reservoir considering filling characteristics

机译:考虑填充特征的大型骨折水库水型发展的物理仿真

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The Fractured-vuggy reservoir is one of the world's most important reservoir types and has great exploration and development potential. However, due to the unique geological characteristics of the fractured-vuggy reservoir and limited understanding of its waterflooding development law, it is more difficult to develop. To strengthen the study of the oil-water flow mechanism and the waterflooding development law of fractured-vuggy reservoirs, we built a large-scale 3-D physical model that can reflect the geological morphology and structure of typical well groups. On the basis of the similarity theory, we determined the parameters of the model and its physical simulation. The physical model was applied to the experimental study of the waterflooding development process and the analysis of relevant influencing factors. The results show that the low-high mode can effectively touch the reserves in high parts, and the development effect is better than that of the high-low mode. There is an optimal water injection rate in waterflooding development to maximize the recovery. Weak bottom water energy at the bottom of the reservoir plays a positive role in waterflooding development, whereas strong bottom water energy increases the risk of premature water breakthrough, which is not conducive to waterflooding development. The substantial difference in oil and water viscosities makes viscous fingering more obvious, which reduces the stability of the displacement process and reduces the efficiency of waterflooding development. This study may provide strong guidance to further understand the oil-water flow law and improve waterflooding development efficiency for fractured-vuggy reservoirs.
机译:骨折 - Vuggy水库是世界上最重要的水库类型之一,具有很大的勘探和发展潜力。然而,由于骨折的武侠水库的独特地质特征,并对其水上发展法的理解有限,更难以发展。为了加强对油水流量机制的研究和骨折水库的水上发展规律,我们建立了一个大型三维物理模型,可以反映典型井群的地质形态和结构。在相似性理论的基础上,我们确定了模型的参数及其物理模拟。物理模型应用于水断发育过程的实验研究及相关影响因素分析。结果表明,低高模式可以有效地触及高零件的储备,并且开发效果优于高低模式。水性开发中有最佳的注水速率,以最大限度地提高复苏。水库底部的弱底水能在水上发展中起着积极作用,而强大的底部水能增加了过早的水突破的风险,这不利于水上发展。石油和水粘度的显着差异使粘性手指更加明显,这降低了位移过程的稳定性,降低了水上发展的效率。本研究可以提供强大的指导,以进一步了解油水流法,提高骨折水库的水上发展效率。

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