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Reservoir-on-a-Chip (ROC): A new paradigm in reservoir eegineering

机译:片上水库(ROC):水库工程的新范例

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摘要

In this study, we design a microfluidic chip, which represents the pore structure of a naturally occurring oil-bearing reservoir rock. The pore-network has been etched in a silicon substrate and bonded with a glass covering layer to make a complete microfluidic chip, which is termed as 'Reservoir-on-a-chip' (ROC). Here we report, for the first time, the ability to perform traditional waterflooding experiments in a ROC. Oil is kept as the resident phase in the ROC, and waterflooding is performed to displace the oil phase from the network. The flow visualization provides specific information about the presence of the trapped oil phase and the movement of the oil/water interface/meniscus in the network. The recovery curve is extracted based on the measured volume of oil at the outlet of the ROC. We also provide the first indication that this oil-recovery trend realized at chip-level can be correlated to the flooding experiments related to actual reservoir cores. Hence, we have successfully demonstrated that the conceptualized 'Reservoir-on-a-Chip' has the features of a realistic pore-network and in principle is able to perform the necessary flooding experiments that are routinely done in reservoir engineering.
机译:在这项研究中,我们设计了一种微流控芯片,它代表了天然存在的含油储层岩石的孔隙结构。孔网络已在硅基板上蚀刻,并与玻璃覆盖层结合,制成了完整的微流控芯片,称为“芯片上储液器”(ROC)。在这里,我们首次报告了在ROC中执行传统注水实验的能力。在ROC中将油保留为驻留相,并进行注水以从网络中置换出油相。流动可视化提供了有关被困油相的存在以及网络中油/水界面/弯液面运动的特定信息。根据ROC出口处测得的油量提取回收率曲线。我们还提供了第一个迹象,表明在芯片级实现的这种采油趋势可以与与实际油藏岩心有关的驱油实验相关。因此,我们已经成功地证明了概念化的“单片储层”具有逼真的孔隙网络的特征,并且原则上能够执行在储层工程中常规进行的必要注水实验。

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