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Experimental and numerical modeling of viscous fingering in liquid-liquid miscible displacements.

机译:液-液混溶位移中粘性指法的实验和数值模型。

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Viscous fingering is a phenomenon caused by the momentum difference between the displacing fluid of high viscosity and the displaced fluid of low viscosity. This phenomenon plays a vital role not only in numerous applications of enhanced oil recovery but also in ground water modeling and several chemical engineering applications. The selection of the displacing fluid with particular characteristics becomes extremely significant in avoiding the growth and the propagation of its finger-patterned flow, which leads to extremely poor displacement efficiency in both miscible and immiscible displacement schemes for enhanced oil recovery. Currently the petroleum industry is faced with great discrepancy between prediction and field performance of these displacement schemes because of the presence of the phenomenon of viscous fingering, which ultimately renders the flow schemes instable. This research is aimed at developing a comprehensive mathematical model validated with a series of experimental observations to minimize the gap between the predicted and real field performances of miscible displacement schemes. (Abstract shortened by UMI.)
机译:粘性指法是由高粘度的置换液和低粘度的置换液之间的动量差引起的现象。这种现象不仅在提高采油率的众多应用中,而且在地下水建模和一些化学工程应用中都起着至关重要的作用。具有特殊特性的驱替液的选择对于避免其指状流的增长和传播变得极为重要,这导致在用于提高油采收率的可混溶和不可混溶驱替方案中,驱替效率极差。当前,由于存在粘性指法现象,石油工业在这些位移方案的预测和现场性能之间面临着巨大的差异,这最终使流动方案变得不稳定。这项研究的目的是开发一个综合的数学模型,并通过一系列实验观察加以验证,以最小化可混溶驱替方案的预测性能与实际性能之间的差距。 (摘要由UMI缩短。)

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