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Energy efficiency characteristics in steady-state relative permeability diagrams of two-phase flow in porous media

机译:多孔介质中两相流稳态相对渗透率图中的能效特性

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摘要

Experimental evidence on the phenomenology of steady-state two-phase flow in porous media processes is recorded in the conventional relative permeability diagrams. In the present work, the hypothesis on the existence of steady-state flow conditions, for which the energy efficiency of two-phase flow in porous media processes attains a maximum value, has been tested against available laboratory data. The energy efficiency of the process is considered with respect to the oil transport over the mechanical power supplied to it or, "oil produced per kW of mechanical power dissipated in pumps", appropriately reduced to a dimensionless variable, namely the energy utilization factor. Relative permeability data sets were acquired from a total of 179 relative permeability diagrams in 35 published laboratory studies, pertaining to a variety of steady-state two-phase flow conditions and types of porous media. The acquired data were then transformed into energy efficiency data sets for the corresponding system and flow settings. The transformation stems from the Darcy fractional flow relations, combined with the equality between the flowrate and mobility ratio observed when steady-state conditions are maintained. The objective of the present work is to reveal and provide extensive experimental evidence on the existence of optimum operating conditions as well as on distinct trends of the energy efficiency over the pertinent flow regimes and system configurations. Areas of critical relevance that have not been investigated or require further investigation are also highlighted. (C) 2016 Elsevier B.V. All rights reserved.
机译:在传统的相对渗透率图中记录了多孔介质过程中稳态两相流现象的实验证据。在目前的工作中,关于稳态流动条件存在的假设已经通过可用的实验室数据进行了检验,多孔介质过程中两相流动的能效达到最大值的稳态流动条件。考虑到相对于输送给它的机械功率的油输送或“泵中消耗的每kW机械功率产生的油”适当降低到无量纲变量,即能量利用率,该过程的能量效率。相对渗透率数据集是从35份已发表的实验室研究中的总共179张相对渗透率图表中获得的,涉及各种稳态两相流动条件和多孔介质的类型。然后将获取的数据转换为相应系统和流量设置的能效数据集。该转换源于达西分数流关系,并结合维持稳态条件时观察到的流速和流动率之间的相等性。本工作的目的是揭示和提供有关最佳运行条件的存在以及广泛的实验证据,以及在相关流态和系统配置上能效的不同趋势。还突出显示了尚未调查或需要进一步调查的关键相关领域。 (C)2016 Elsevier B.V.保留所有权利。

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