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首页> 外文期刊>The Journal of Canadian Petroleum Technology >Effect of Sand Matrix Deformation on Solution Gas Drive in Heavy Oil Reservoirs
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Effect of Sand Matrix Deformation on Solution Gas Drive in Heavy Oil Reservoirs

机译:砂岩变形对稠油油藏固溶气驱的影响

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Solution gas liberation is one of the key factors contributing to the success in solution gas drive in heavy oil reservoirs. Uncon-solidated sands dilate with decreasing effective stress, and contract with increasing effective stress. This paper describes special experiments that were designed to investigate the effect of sand matrix deformation on bubble nucleation and growth in heavy oil, and oil production. The experiments involved flow of heavy oil with dissolved gas in reconstituted sand packs. Gas bubbles were allowed to nucleate and grow in dilated sand packs by lowering the effective confining stresses in an undrained (closed) system. Then, oil was produced from the sand packs by reducing pressure. Production rates from these experiments were compared to those from constant pressure decline tests. Based on the experimental results, a mechanistic model for solution gas drive in heavy oil was proposed to explain the linear relationship between the oil production and depletion pressure.
机译:溶解气的释放是导致稠油油藏成功驱动溶解气的关键因素之一。未固结的砂随着有效应力的减小而膨胀,并随着有效应力的增大而收缩。本文介绍了一些特殊的实验,旨在研究砂基质变形对重油中气泡成核和生长以及产油的影响。实验涉及重油和溶解气体在重组沙包中的流动。通过降低不排水(密闭)系统中的有效约束应力,使气泡成核并在膨胀的沙包中生长。然后,通过减压从沙袋中产生油。将这些实验的生产率与恒压下降试验的生产率进行了比较。基于实验结果,提出了稠油中固溶气驱的机理模型,解释了产油量与枯竭压力之间的线性关系。

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