左鸿:Boundary scheme for lattice Boltzmann modeling of micro-scale gas flow in organic-rich pores considering surface diffusion论文

左鸿:Boundary scheme for lattice Boltzmann modeling of micro-scale gas flow in organic-rich pores considering surface diffusion论文

本文主要研究内容

作者左鸿,邓守春,李海波(2019)在《Boundary scheme for lattice Boltzmann modeling of micro-scale gas flow in organic-rich pores considering surface diffusion》一文中研究指出:We propose a boundary scheme for addressing multi-mechanism flow in a porous medium in slip and early transition flow regimes, which is frequently encountered in shale gas reservoirs. Micro-gaseous flow in organic-rich shale involves a complex flow mechanism. A self-developed boundary scheme that combines the non-equilibrium extrapolation scheme and the combined diffusive reflection and bounce-back scheme(half-way DBB) to embed the Langmuir slip boundary into the single-relaxation-time lattice Boltzmann method(SRT-LBM) enables us to describe this process, namely, the coupling effect of micro-gaseous flow and surface diffusion in organic-rich nanoscale pores. The present LBM model comes with the careful consideration of the local Knudsen number, local pressure gradient, viscosity correction model, and regularization procedure to account for the rarefied gas flows in irregular pores. Its validity and accuracy are verified by several benchmarking cases, and the calculated results by this boundary scheme accord well with our analytical solutions.This boundary scheme shows a higher accuracy than the existing studies. Additionally, a subiteration strategy is presented to tackle the coupled micro-gaseous flow and surface diffusion, which necessitates the iteration process matching of these two mechanisms. The multi-mechanism flow in the self-developed irregular pores is also numerically investigated and analyzed over a wide range of parameters. The results indicate that the present model can effectively capture the coupling effect of micro-gaseous flow and surface diffusion in a tree-like porous medium.

Abstract

We propose a boundary scheme for addressing multi-mechanism flow in a porous medium in slip and early transition flow regimes, which is frequently encountered in shale gas reservoirs. Micro-gaseous flow in organic-rich shale involves a complex flow mechanism. A self-developed boundary scheme that combines the non-equilibrium extrapolation scheme and the combined diffusive reflection and bounce-back scheme(half-way DBB) to embed the Langmuir slip boundary into the single-relaxation-time lattice Boltzmann method(SRT-LBM) enables us to describe this process, namely, the coupling effect of micro-gaseous flow and surface diffusion in organic-rich nanoscale pores. The present LBM model comes with the careful consideration of the local Knudsen number, local pressure gradient, viscosity correction model, and regularization procedure to account for the rarefied gas flows in irregular pores. Its validity and accuracy are verified by several benchmarking cases, and the calculated results by this boundary scheme accord well with our analytical solutions.This boundary scheme shows a higher accuracy than the existing studies. Additionally, a subiteration strategy is presented to tackle the coupled micro-gaseous flow and surface diffusion, which necessitates the iteration process matching of these two mechanisms. The multi-mechanism flow in the self-developed irregular pores is also numerically investigated and analyzed over a wide range of parameters. The results indicate that the present model can effectively capture the coupling effect of micro-gaseous flow and surface diffusion in a tree-like porous medium.

论文参考文献

  • [1].Characteristics of fissures and pores of anthracite in Jincheng by SEM[J]. LI Guihong,ZHANG Hong,ZHANG Hui,SONG Xiaozhong Institute of Geology,Xi’an Branch,China Coal Research Institute,Xi’an 710054,China.  Mining Science and Technology.2010(05)
  • [2].Advanced characterization of pores and fractures in coals by nuclear magnetic resonance and X-ray computed tomography[J]. YAO YanBin, LIU DaMeng, CAI YiDong & LI JunQian School of Energy Resources, China University of Geosciences, Beijing 100083, China.  Science China(Earth Sciences).2010(06)
  • [3].Model construction of micro-pores in shale: A case study of Silurian Longmaxi Formation shale in Dianqianbei area, SW China[J]. CHEN Keluo,ZHANG Tingshan,CHEN Xiaohui,HE Yingjie,LIANG Xing.  Petroleum Exploration and Development.2018(03)
  • [4].Graptolite-Derived Organic Matter and Pore Characteristics in the Wufeng-Longmaxi Black Shale of the Sichuan Basin and its Periphery[J]. WU Jin,ZHOU Wen,SUN Shasha,ZHOU Shangwen,SHI Zhensheng.  Acta Geologica Sinica(English Edition).2019(04)
  • [5].基于格子Boltzmann方法饱和土体一维固结数值解[J]. 王志良,辛立斌,申林方,李明宇.  排灌机械工程学报.2017(10)
  • [6].Numerical Modelling and Simulation of Seepage in Tight Sandstone Based on Parallel Lattice Boltzmann Method[J]. TANG Mingming,LU Shuangfang,LIANG Hongru,YAN Bihui,MA Huifang,SHEN Shan.  Acta Geologica Sinica(English Edition).2015(S1)
  • [7].Distribution and genesis of secondary pores in Paleogene clastic reservoirs of Beidagang structural belt in the Huanghua depression[J]. SU Nina, JIN Zhenkui, SONG Fan Faculty of Natural Resource and Information Technology, China University of Petroleum, Beijing 102249, China.  Mining Science and Technology.2010(01)
  • [8].基于格子Boltzmann方法的页岩气藏气体滑脱效应分析[J]. 赵金洲,符东宇,李勇明,彭瑀,廖毅.  油气地质与采收率.2016(05)
  • [9].利用格子Boltzmann方法研究水泥替置[J]. 田迪,符显峰,张强.  国外油田工程.2009(01)
  • [10].泥石流的增强碰撞算子格子Boltzmann模型[J]. 王沁,姚令侃,何平.  工程数学学报.2007(04)
  • 论文详细介绍

    论文作者分别是来自Chinese Physics B的左鸿,邓守春,李海波,发表于刊物Chinese Physics B2019年03期论文,是一篇关于,Chinese Physics B2019年03期论文的文章。本文可供学术参考使用,各位学者可以免费参考阅读下载,文章观点不代表本站观点,资料来自Chinese Physics B2019年03期论文网站,若本站收录的文献无意侵犯了您的著作版权,请联系我们删除。

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