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首页> 外文期刊>Advances in Water Resources >Comparison of CO2 trapping in highly heterogeneous reservoirs with Brooks-Corey and van Genuchten type capillary pressure curves
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Comparison of CO2 trapping in highly heterogeneous reservoirs with Brooks-Corey and van Genuchten type capillary pressure curves

机译:用Brooks-Corey和van Genuchten型毛细管压力曲线比较高均质油藏中的CO2捕集

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Geological heterogeneities affect the dynamics of carbon dioxide (CO2) plumes in subsurface environments in important ways. Previously, we showed how the dynamics of CO2 plumes are influenced by the multiscaled sedimentary architecture in deep brine fluvial-type reservoirs. The results confirm that representing small-scale features and the corresponding heterogeneity in saturation functions, along with hysteresis in saturation functions, are all critical to understanding capillary trapping processes. Here, we show that when heterogeneity and hysteresis are represented, the two conventional approaches for defining saturation functions, Brooks-Corey and van Genuchten, represent fundamentally different physical systems. The Brooks-Corey approach represents heterogeneity in entry pressures, and leads to trapping by capillary pinning. The van Genuchten approach represents a network of pores transporting the nonwetting fluid, across rock types, with negligible capillary entry pressure, and leads to capillary retardation. These differences significantly affect the large-scale characteristics of CO2 plumes (i.e., their mass, shape, and position). (C) 2016 Elsevier Ltd. All rights reserved.
机译:地质异质性以重要方式影响地下环境中二氧化碳(CO2)羽流的动力学。先前,我们显示了深盐水河床型储层中多尺度沉积构造如何影响二氧化碳羽流的动力学。结果证实,代表小尺度特征和饱和度函数中的相应异质性,以及饱和度函数中的滞后,对于理解毛细管捕集过程都是至关重要的。在这里,我们表明当表示异质性和磁滞现象时,用于定义饱和度函数的两种常规方法Brooks-Corey和van Genuchten代表了根本不同的物理系统。 Brooks-Corey方法代表了入口压力的不均一性,并通过毛细管钉扎导致捕获。 van Genuchten的方法代表了一种孔隙网络,该孔隙网络在岩石类型之间以微弱的毛细管进入压力来输送非润湿性流体,并导致毛细管滞后。这些差异会严重影响CO2烟流的大规模特征(即其质量,形状和位置)。 (C)2016 Elsevier Ltd.保留所有权利。

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