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Analyzing the Adaption of Different Adsorption Models for Describing the Shale Gas Adsorption Law

机译:分析描述页岩气吸附规律的不同吸附模型的适应性

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The adsorption capacity of a shale gas reservoir is mainly determined by the isothermal adsorption experiment. In this study, the building conditions and performances of seven single-component and five multi-component adsorption models were compared and analyzed. The results show that most shale gas reservoir adsorption characteristics obey those of type I on the macroscopic scale. The adsorption isotherms of single components can be described by the Langmuir-Freundlich, Langmuir, and Toth models. The revised Langmuir, extended Langmuir, and the loading ratio correlation (LRC) models can be applied to binary-component mixtures; and the extended Langmuir and LRC models perform best for shale gas. The obtained results might have an important promoting effect for modeling the shortage of shale gas.
机译:页岩气藏的吸附能力主要通过等温吸附实验确定。在本研究中,比较和分析了七个单组分和五个多组分吸附模型的构建条件和性能。结果表明,从宏观上看,大多数页岩气储层的吸附特征均服从Ⅰ型特征。单个组分的吸附等温线可以用Langmuir-Freundlich,Langmuir和Toth模型描述。修订后的Langmuir模型,扩展的Langmuir模型和装载比相关性(LRC)模型可以应用于二元混合物。扩展的Langmuir和LRC模型最适合页岩气。获得的结果可能对模拟页岩气短缺具有重要的促进作用。

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