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非均相纳米孔中多相烃二元混合物的相行为和组成分布:分子动力学模拟研究

Phase Behavior and Composition Distribution of Multiphase Hydrocarbon Binary Mixtures in Heterogeneous Nanopores: A Molecular Dynamics Simulation Study.

作者信息

de Andrade Deraldo de Carvalho Jacobina, Nojabaei Bahareh

机构信息

Department of Mining and Minerals Engineering, Virginia Polytechnic Institute and State University, Blacksburg, VA 24061, USA.

出版信息

Nanomaterials (Basel). 2021 Sep 18;11(9):2431. doi: 10.3390/nano11092431.

Abstract

In this study, molecular dynamics (MD) simulation is used to investigate the phase behavior and composition distribution of an ethane/heptane binary mixture in heterogeneous oil-wet graphite nanopores with pore size distribution. The pore network system consists of two different setups of connected bulk and a 5-nm pore in the middle; and the bulk connected to 5-nm and 2-nm pores. Our results show that nanopore confinement influences the phase equilibrium of the multicomponent hydrocarbon mixtures and this effect is stronger for smaller pores. We recognized multiple adsorbed layers of hydrocarbon molecules near the pore surface. However, for smaller pores, adsorption is dominant so that, for the 2-nm pore, most of the hydrocarbon molecules are in the adsorbed phase. The MD simulation results revealed that the overall composition of the hydrocarbon mixture is a function of pore size. This has major implications for macro-scale unconventional reservoir simulation, as it suggests that heterogenous shale nanopores would host fluids with different compositions depending on the pore size. The results of this paper suggest that modifications should be made to the calculation of overall composition of reservoir fluids in shale nanopores, as using only one overall composition for the entire heterogenous reservoir can result in significant error in recovery estimations.

摘要

在本研究中,采用分子动力学(MD)模拟来研究具有孔径分布的非均相油湿石墨纳米孔中乙烷/庚烷二元混合物的相行为和组成分布。孔隙网络系统由两种不同的连通体设置以及中间的一个5纳米孔隙组成;其中一个连通体连接到5纳米和2纳米的孔隙。我们的结果表明,纳米孔限制会影响多组分烃类混合物的相平衡,且这种影响对于较小的孔隙更强。我们识别出了靠近孔隙表面的多层烃类分子吸附层。然而,对于较小的孔隙,吸附占主导地位,以至于对于2纳米的孔隙,大多数烃类分子处于吸附相。MD模拟结果表明,烃类混合物的总体组成是孔径的函数。这对宏观尺度的非常规油藏模拟具有重要意义,因为这表明非均相的页岩纳米孔会根据孔径容纳不同组成的流体。本文的结果表明,对于页岩纳米孔中油藏流体总体组成的计算应进行修正,因为对整个非均相油藏仅使用一种总体组成会导致采收率估算出现显著误差。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0c9e/8465818/2cedb8472fb1/nanomaterials-11-02431-g001.jpg

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