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首页> 外文期刊>Journal of Petroleum Science & Engineering >Evaluating the potential for oil recovery by imbibition and time-delay effect in tight reservoirs during shut-in
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Evaluating the potential for oil recovery by imbibition and time-delay effect in tight reservoirs during shut-in

机译:在关闭期间,在紧密水库中的吸收和时间延时效应来评估储油率的潜力

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When stimulated only by natural energy, tight oil reservoirs have low production efficiency. Improving the potential for oil recovery by imbibition is essential to enhancing oil production. Shut-in is an effective way to make good use of the potential for oil recovery by imbibition. In this study, imbibition experiments and nuclear magnetic resonance (NMR) testing were combined to reveal the characteristics of spontaneous imbibition and the T-2 value of the oil recovery potential by imbibition in tight oil reservoirs. The main factors affecting the potential for oil recovery by imbibition were studied. We also discussed the relationship between clay minerals and the potential for oil recovery by imbibition, especially the time-delay effect of imbibition displacement. A modified model based on the static balance time for spontaneous imbibition was proposed to calculate the field shut-in time. The results show that the static spontaneous imbibition balance time of tight oil reservoirs are significantly different in various zones. The oil recovery by imbibition has an obvious time-delay effect and it could put the oil in non-movable pores under natural conditions to use. Internal conditions like microscopic pore structure and the type of clay minerals affect the oil recovery by imbibition on small pores (T-2 < 100 ms). External conditions like reservoir temperature, pressure, and bedding affect oil recovery by imbibition in small and large pores. The clay minerals expand after the interaction between fracturing fluids and rock. Meanwhile, oil is discharged with compression of those pore space. To optimize the shut-in time of a tight reservoir, these effects of clay behavior can suggest good practices in hydraulic fracturing.
机译:当仅通过天然能量刺激时,拧紧油藏的生产效率低。通过吸收的改善油回收潜力对于提高石油生产至关重要。关闭是一种有效的方法,可以利用通过吸收的储油潜力。在该研究中,组合了吸收实验和核磁共振(NMR)测试,揭示了通过狭小油藏中的吸收的自发性吸收和油恢复电位的T-2值的特性。研究了影响通过吸收的吸收潜力的主要因素。我们还讨论了粘土矿物质之间的关系以及通过吸收的吸油潜力,特别是吸收流离失所的时间延时效应。提出了一种基于静态平衡时间的自发性吸入时间的修改模型来计算截止时间。结果表明,各区域的静电自发性吸收平衡时间在各个区域中显着差异。通过吸收的采油具有明显的时滞效果,可以在使用的自然条件下将油放入不可移动的毛孔中。像微观孔隙结构等内部条件和粘土矿物的类型会通过在小孔(T-2 <100毫秒)上的吸收来影响油回收。外部条件如储层温度,压力和床上用品通过小毛孔中的吸收来影响石油回收。粘土矿物在压裂液和岩石之间的相互作用后膨胀。同时,油被排出,压缩这些孔隙空间。为了优化紧密水库的关闭时间,这些粘土行为的影响可以提出液压压裂的良好实践。

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