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EXPERIMENTAL INVESTIGATION OF FACTORS AFFECTING MISCIBLE TWO-PHASE FLOW IN FRACTURED AND NON-FRACTURED MICROMODELS

机译:裂缝和非裂缝微模中混溶两相流量的因素的实验研究

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Micromodel is small-scale artificial model of porous medium which is known as a novel approach for simulating flow and transport in porous media. For better understanding the effect of fracture geometrical properties on oil recovery efficiency, a series of first contact miscible solvent injection process were conducted on horizontal glass micromodels at several fixed flow rate conditions. The micromodels were initially saturated with the heavy crude oil. The produced oil as a function of injected volume of solvents was measured using image analysis of the provided pictures. The concentration calibration curves of solvents in heavy crude oil were used for evaluating the solvents concentration. Several fractured and non-fractured quarter five-spot micromodels were generated by chemically etching process. The result of the experiments show that the produced oil decreased when the flow rate, fracture spacing, fracture discontinuity, fracture overlap, and fracture distribution were increased. In contrast, the produced oil increased, when the solvent viscosity, fracture orientation angles, fracture discontinuity-distribution and the number of fracture were increased. In addition, an optimum solvent composition is proposed.
机译:Micromodel是多孔介质的小规模人工模型,称为模拟多孔介质中的流动和运输的新方法。为了更好地理解骨折几何特性对油回收效率的影响,在几个固定的流量条件下在水平玻璃微模上进行一系列第一接触可混溶溶剂注入过程。微模浆液最初用重原油饱和。使用所提供的图像的图像分析测量作为注入溶剂的溶剂的函数的生产的油。重原油溶剂的浓度校准曲线用于评估溶剂浓度。通过化学蚀刻工艺产生几个破碎和非裂缝季度五点微兆丝。实验结果表明,当流速,断裂间距,断裂不连续性,断裂重叠和断裂分布增加时,生产的油减少。相反,当溶剂粘度,断裂取向角,断裂不连续性分布和骨折次数增加时,产生的油增加。此外,提出了最佳溶剂组合物。

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