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A discrete-domain description of multiphase flow in porous media: Rugged energy landscapes and the origin of hysteresis

机译:多孔介质中多相流的离散域描述:崎energy的能量格局和磁滞现象的起源

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We propose a discrete-domain model to describe mesoscale (many pore) immiscible displacements in porous media. We conceptualize the porous medium and fluid system as a set of weakly connected multistable compartments. The overall properties of the system emerge from the small-scale compartment dynamics. Our model aims at capturing the rugged energy landscape of multiphase porous media systems, emphasizing the role of metastability and local equilibria in the origin of hysteresis. Under two-phase displacements, the system behaves hysteretically, but our description does not rely on past saturations, turning points, or drainage/imbibition labels. We characterize the connection between micrometastability and overall system behavior, and elucidate the different nature of pressure-controlled and rate-controlled immiscible displacements in porous media.
机译:我们提出了一种离散域模型来描述中尺度(许多孔隙)在多孔介质中的不混溶位移。我们将多孔介质和流体系统概念化为一组弱连接的多稳态隔室。系统的整体特性来自小规模的舱室动力学。我们的模型旨在捕获多相多孔介质系统崎energy不平的能源格局,强调亚稳态和局部平衡在磁滞起源中的作用。在两相位移下,系统表现出滞后性,但我们的描述并不依赖于过去的饱和度,转折点或排水/吸水标签。我们表征了微稳态与整体系统行为之间的联系,并阐明了多孔介质中压力控制和速率控制的不混溶驱替的不同性质。

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