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Systematic study of steam-water capillary pressure

机译:汽水毛细压力的系统研究

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摘要

Although steam-water capillary pressure is of central importance in geothermal reservoir engineering, it is nevertheless still poorly understood because of the difficulties involved in making direct measurements. To this end, we have conducted some experimental and theoretical studies. Unique methods have been developed to measure capillary pressures in order to overcome the complications in laboratory procedures associated with mass transfer as temperature and pressure changes. Both steam-water and air-water capillary pressures were measured and compared. Significant differences were found; in the cases studied, the steam-water capillary pressures were smaller. The drainage capillary pressure was greater than the imbibition capillary pressure, as was expected. Using experimental data, an empirical model was derived to calculate steam-water capillary pressure directly. Also developed was a generalized capillary pressure model based on fractal modeling of a porous medium; it encompasses the frequently used Brooks-Corey model (Brooks, R.H., Corey, A.T., 1964. Hydraulic Properties of Porous Media. Colorado State University, Hydro paper No. 3, Fort Collins, CO, USA, 24 pp.) as well as others. Recent studies on the topic are summarized and reviewed.
机译:尽管蒸汽-毛细水压在地热储层工程中至关重要,但由于进行直接测量存在困难,因此对它的了解仍然很少。为此,我们进行了一些实验和理论研究。已经开发出独特的方法来测量毛细管压力,以克服实验室程序中随着温度和压力变化而与传质相关的复杂性。测量并比较了蒸汽-水和空气-水的毛细压力。发现了显着差异。在所研究的情况下,蒸汽-水的毛细管压力较小。如预期的那样,引流毛细压力大于吸收毛细压力。利用实验数据,导出了经验模型来直接计算蒸汽-水毛细管压力。还开发了基于多孔介质分形模型的广义毛细管压力模型。它包含了常用的Brooks-Corey模型(Brooks,RH,Corey,AT,1964年。多孔介质的水力特性。科罗拉多州立大学,水文第3号,美国科罗拉多州柯林斯堡,24页)。其他。总结并回顾了有关该主题的最新研究。

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