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A Heuristic Insight on End-Point Calculation and a New Phase Interference Parameter in Two-Phase Relative Permeability Curves for Horizontal Fracture Flow

机译:水平裂缝流动两相相对渗透率曲线的端点计算和新的相干参数启发式分析

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摘要

Relative permeability curves of two-phase flow in a fracture have been a subject of study in recent years. The importance of these curves have been widely observed in multidisciplines, such as water subsurface resources, geothermal energy and underground hydrocarbon resources, especially fractured oil and gas reservoirs. Extensive experimental studies have been cited alongside the numerical studies in this area. However, simple analytical and practical solutions are still attractive. In the current study, wettability effects and phase interference explicitly were tried to be implemented in a simple analytical formula. The wettability effects are represented by residual saturations which resulted in direct calculation of relative permeability end points. In addition, the phase interference part affected the shape of the curves that allowed to quantify the degree of phase interference from no phase interference, assigned as zero, to ultimate phase interference, assigned as infinity. The results were compared and validated with the available experimental data in the literature. The proposed formulation is applicable for both smooth and rough fracture assemblies.
机译:裂缝中两相流的相对渗透率曲线是近年来研究的主题。这些曲线的重要性已在多学科中广泛观察到,例如水地下资源,地热能和地下碳氢化合物资源,尤其是裂缝性油气藏。除了该领域的数值研究外,还引用了广泛的实验研究。但是,简单的分析和实际解决方案仍然很有吸引力。在当前的研究中,试图通过简单的分析公式明确实现润湿性效应和相干扰。润湿性的影响以残余饱和度表示,其可以直接计算相对渗透率终点。此外,相位干扰部分会影响曲线的形状,从而可以量化从无相位干扰(分配为零)到最终相位干扰(分配为无穷大)的相位干扰程度。将结果与文献中可用的实验数据进行比较并验证。提议的公式适用于光滑和粗糙的裂缝组件。

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