题名 | GSIS: An efficient and accurate numerical method to obtain the apparent gas permeability of porous media |
作者 | |
通讯作者 | Wu,Lei |
发表日期 | 2020-06-30
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DOI | |
发表期刊 | |
ISSN | 0045-7930
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EISSN | 1879-0747
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卷号 | 206 |
摘要 | The apparent gas permeability (AGP) of a porous medium is an important parameter to predict production of unconventional gas. The Klinkenberg correlation, which states that the ratio of the AGP to the intrinsic permeability is approximately a linear function of reciprocal mean gas pressure, is one of the most popular estimations to quantify AGP. However, due to the difficulty in defining the characteristic flow length in complex porous media where the rarefied gas flow is multiscale, the slope in the Klinkenberg correlation varies significantly for different geometries such that a universal expression seems impossible. In this paper, by solving the gas kinetic equation using the general synthetic iterative scheme (GSIS), we compute the AGP in porous media that are represented by Sierpinski fractals and pore body/throat systems. With the abilities of fast convergence to steady-state solution and asymptotic preserving of Navier-Stokes limit, it is shown that GSIS is a promising tool to simulate low-speed rarefied gas flow through complex multiscale geometries. A new definition of the characteristic flow length is proposed as a function of porosity, tortuosity and intrinsic permeability of porous media, which enables to find a unique slope in the Klinkenberg correlation for all the considered geometries. This research also shows that the lattice Boltzmann method using simple wall scaling for the effective shear viscosity is not able to predict the AGP of porous media. |
关键词 | |
相关链接 | [Scopus记录] |
收录类别 | |
语种 | 英语
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学校署名 | 通讯
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资助项目 | Engineering and Physical Sciences Research Council (EPSRC) in the UK[EP/R041938/1]
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WOS研究方向 | Computer Science
; Mechanics
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WOS类目 | Computer Science, Interdisciplinary Applications
; Mechanics
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WOS记录号 | WOS:000574655300003
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出版者 | |
EI入藏号 | 20202308782868
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EI主题词 | Gas permeability
; Numerical methods
; Gases
; Flow of gases
; Iterative methods
; Kinetic theory of gases
; Navier Stokes equations
; Kinetics
; Integral equations
; Kinetic energy
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EI分类号 | Fluid Flow, General:631.1
; Gas Dynamics:631.1.2
; Calculus:921.2
; Numerical Methods:921.6
; Classical Physics; Quantum Theory; Relativity:931
; Physical Properties of Gases, Liquids and Solids:931.2
; Materials Science:951
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ESI学科分类 | COMPUTER SCIENCE
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Scopus记录号 | 2-s2.0-85085662854
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来源库 | Scopus
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引用统计 |
被引频次[WOS]:17
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成果类型 | 期刊论文 |
条目标识符 | http://sustech.caswiz.com/handle/2SGJ60CL/138115 |
专题 | 工学院_力学与航空航天工程系 |
作者单位 | 1.James Weir Fluids Laboratory,Department of Mechanical and Aerospace Engineering,University of Strathclyde,Glasgow,G1 1XJ,United Kingdom 2.Department of Mechanics and Aerospace Engineering,Southern University of Science and Technology,Shenzhen,518055,China |
通讯作者单位 | 力学与航空航天工程系 |
推荐引用方式 GB/T 7714 |
Su,Wei,Ho,Minh Tuan,Zhang,Yonghao,et al. GSIS: An efficient and accurate numerical method to obtain the apparent gas permeability of porous media[J]. COMPUTERS & FLUIDS,2020,206.
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APA |
Su,Wei,Ho,Minh Tuan,Zhang,Yonghao,&Wu,Lei.(2020).GSIS: An efficient and accurate numerical method to obtain the apparent gas permeability of porous media.COMPUTERS & FLUIDS,206.
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MLA |
Su,Wei,et al."GSIS: An efficient and accurate numerical method to obtain the apparent gas permeability of porous media".COMPUTERS & FLUIDS 206(2020).
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条目包含的文件 | 条目无相关文件。 |
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