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Research on Optimization of Reservoir Perforation Position in Offshore Polymer Flooding Oilfield

机译:海上聚合物驱油田储层射孔位置优化研究

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In order to enhance the effect of polymer flooding in offshore oilfields, so as to realize the longer stable production period and higher oil recovery, the reservoir perforation positions of production wells and injection wells are taken as research objects. By analyzing the distribution of remaining oil and production characteristics under different perforation positions, the optimum perforation positions of production wells and injection wells are selected. Bohai oilfield L was taken as target oilfield in this article, according to the actual reservoir characteristic parameters, three-dimensional laboratory physical simulation experiments of water flooding and polymer flooding were carried out, the experiments include different perforation positions of production wells and injection wells. The research result showed that the influence of perforation position on residual oil and development characteristics of the model is obvious. When takes the scheme of injection well upper part perforated and production well all part perforated, the least of the remaining oil distribution, the longest of the production period without water. Contrast with other perforation schemes, its stable production period increase about 1.2 times, the oil recovery of water flooding increase 3.7% - 6.0%, the oil recovery of polymer flooding increase 2.5% - 4.1%. So it is recommended as the best perforation scheme. Preferable effect had been achieved when translating research findings into practice. It can serve as a reference to the similar offshore oilfield.
机译:为了提高海上油田聚合物驱的效果,以实现更长的稳定生产周期和更高的采收率,以生产井和注入井的储层射孔位置为研究对象。通过分析不同射孔位置下剩余油的分布和生产特征,选择生产井和注入井的最佳射孔位置。本文以渤海油田L为目标油田,根据实际油藏特征参数,进行了注水,注聚合物的三维实验室物理模拟实验,实验包括生产井和注入井的不同射孔位置。研究结果表明,射孔位置对剩余油的影响及模型的开发特征明显。当采用注入井上部穿孔而生产井所有部分穿孔的方案时,剩余油分布最少,无水生产时间最长。与其他射孔方案相比,其稳定生产期增加了约1.2倍,注水油采收率提高了3.7%-6.0%,聚合物注水油采收率提高了2.5%-4.1%。因此,建议将其作为最佳穿孔方案。将研究成果转化为实践时,已取得了较好的效果。它可以作为类似海上油田的参考。

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