Chinese Journal of Computational Physics ›› 2021, Vol. 38 ›› Issue (5): 534-542.DOI: 10.19596/j.cnki.1001-246x.8346
Special Issue: 多孔介质毛细动力学研究
• Special Topics on Capillary Dynamics in Porous Media • Previous Articles Next Articles
Liu YANG1(), Jingwei GAO1, Yuanhan ZHENG1, Xiaomei LI2, Yunfan ZHANG1
Received:
2021-02-24
Online:
2021-09-25
Published:
2022-03-24
CLC Number:
Liu YANG, Jingwei GAO, Yuanhan ZHENG, Xiaomei LI, Yunfan ZHANG. Numerical Simulation of Imbibition Law of Heterogeneous Sandy Conglomerate: Lattice Boltzmann Method[J]. Chinese Journal of Computational Physics, 2021, 38(5): 534-542.
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URL: http://www.cjcp.org.cn/EN/10.19596/j.cnki.1001-246x.8346
岩心编号 | 直径/cm | 长度/cm | 孔隙度/% | 渗透率/mD |
砂砾岩1 | 2.510 | 4.511 | 6.3 | 3.08 |
砂砾岩2 | 2.507 | 4.983 | 3.0 | 0.262 |
砂砾岩3 | 2.520 | 6.742 | 7.4 | 0.878 |
砂砾岩4 | 3.650 | 3.458 | 5.7 | 0.386 |
Table 1 Physical characteristics of sandy conglomerate samples in Xinjiang
岩心编号 | 直径/cm | 长度/cm | 孔隙度/% | 渗透率/mD |
砂砾岩1 | 2.510 | 4.511 | 6.3 | 3.08 |
砂砾岩2 | 2.507 | 4.983 | 3.0 | 0.262 |
砂砾岩3 | 2.520 | 6.742 | 7.4 | 0.878 |
砂砾岩4 | 3.650 | 3.458 | 5.7 | 0.386 |
1 |
STUKAN M R, LIGNEUL P, CRAWSHAW J P, et al. Spontaneous imbibition in nanopores of different roughness and wettability[J]. Langmuir, 2010, 26 (16): 13342- 13352.
DOI |
2 | 杨文, 李建良, 刘刚, 等. 多因素影响下Y型管内流动状态数值模拟研究[J]. 油气田地面工程, 2020, 39 (03): 27- 34. |
3 |
YU Mengping, WU Dagang, CHEN Yanjun, et al. Electromagnetic rock properties' characterization and modeling using 3D micro-CT rock images[J]. Journal of Electromagnetic Waves and Applications, 2020, 34 (8): 1073- 1089.
DOI |
4 |
TANG Xuelin, YANG Shangyu, WANG Fujun. Researches on two-phase flows around a hydrofoil using Shan-Chen multi-phase LBM model[J]. Journal of Mechanical Science and Technology, 2016, 30 (2): 575- 584.
DOI |
5 |
ABED Z, MAHNUD A. A multiple relaxation time extension of the constant speed kinetic model[J]. International Journal of Modern Physics C, 2016, 27 (8): 1650088.
DOI |
6 | SHANGGUAN Yanqin, WANG Xian, LI Yueming. Hing-performance numerical simulation of jet in cross-flow based on lattice Boltzmann method[J]. Chinese Journal of Computational Physics, 2015, 32 (6): 669- 676. |
7 | LEI Timan, MENG Xuhui, GUO Zhaoli. Lattice Boltzmann study on influence of chemical reaction on mixing of miscible fluids with viscous instability in porous media[J]. Chinese Journal of Computational Physics, 2016, 33 (4): 399- 409. |
8 | JU Long, ZHANG Chunhua, CHEN Songze, et al. Lattice Boltzmann study on displacement process of thermal miscible fluids in porous media[J]. Chinese Journal of Computational Physics, 2019, 36 (6): 648- 658. |
9 | HU Yu, SUN Tao. Three-dimensional numerical simulation of dynamics characteristics of two rising bubbles with lattice Boltzmann method[J]. Chinese Journal of Computational Physics, 2020, 37 (3): 277- 283. |
10 | GHARIBI F, ASHRAFIZAADEH M. Simulation of high-viscosity-ratio multicomponent fluid flow using a pseudopotential model based on the nonorthogonal central-moments lattice Boltzmann method[J]. Physical Review E, 2020, 101 (4-1): 043311. |
11 |
MEHRDAD A, ANDREA P, PAOLO R D, et al. A lattice-Boltzmann study of permeability-porosity relationships and mineral precipitation patterns in fractured porous media[J]. Computational Geosciences, 2020, 24 (5): 1865- 1882.
DOI |
12 | 何雅玲, 王勇, 李庆. 格子Boltzmann方法的理论及应用[M]. 北京: 科学出版社, 2008. |
13 | 郭照立, 郑楚光, 李青, 等. 流体动力学的格子Boltzmann方法[M]. 武汉: 湖北科学技术出版社, 2002. |
14 | LI Pei, BERKOWITZ B. Characterization of mixing and reaction between chemical species during cycles of drainage and imbibition in porous media[J]. Advances in Water Resources, 2019, 130 (8): 113- 128. |
15 |
SEBASTINE L, ANDREA P, BASTINE C, et al. Three-dimensional lattice Boltzmann method benchmarks between color-gradient and pseudo-potential immiscible multi-component models[J]. International Journal of Modern Physics C, 2017, 28 (7): 1750085.
DOI |
16 | ZHANG Tao, SUN Shuyu. A coupled lattice Boltzmann approach to simulate gas flow and transport in shale reservoirs with dynamic sorption[J]. Fuel, 2019, 246 (2): 196- 203. |
17 | AKSHAY G, TAYFUN B, SUSSANTA S Y, et al. Pore-scale interfacial dynamics and oil-water relative permeabilities of capillary driven counter-current flow in fractured porous media[J]. Journal of Petroleum Science and Engineering, 2013, 103 (2): 106- 114. |
18 |
WIKLUND H S, UESAKA T. Microfluidics of imbibition in random porous media[J]. Physical Review E, 2013, 87 (2): 023006.
DOI |
19 | LIU Yang, CAI Jianchao, MUHAMMAD S, et al. A study of the role of microfractures in counter-current spontaneous imbibition by lattice Boltzmann simulation[J]. Transport in Porous Media, 2020, 133 (5): 313- 32. |
20 | 张戈, 冯程远, 龚文波, 等. 粗糙元对单裂隙渗流影响的格子Boltzmann方法模拟及分析[J]. 中国科学: 物理学, 力学, 天文学, 2017, 47 (02): 68- 79. |
21 |
GHASEMI F, GHAEDI M, ESCROCHI M. A new scaling equation for imbibition process in naturally fractured gas reservoirs[J]. Advances in Geo-Energy Research, 2020, 4 (1): 99- 106.
DOI |
22 |
SHENG G, SU Y, ZHAO H, et al. A unified apparent porosity/permeability model of organic porous media: Coupling complex pore structure and multi-migration mechanism[J]. Advances in Geo-Energy Research, 2020, 4 (2): 115- 125.
DOI |
23 | CAROLINA M G, BELEN G F, DIEGO F, et al. Impact of mussel shell aggregates on air lime mortars: Pore structure and carbonation[J]. Journal of Cleaner Production, 2019, 215 (10): 650- 668. |
24 |
HUANG Haibo, LI Zhitao, LIU Shuaishuai, et al. Shan-and-Chen-type multiphase lattice Boltzmann study of viscous coupling effects for two-phase flow in porous media[J]. Int J Numer Meth Fluids, 2009, 61 (3): 341- 354.
DOI |
25 | BAGDAGUL D, LUIS R, ROJAS S, et al. Numerical simulation of diffusion process in T-shaped micromixer using Shan-Chen lattice Boltzmann method[J]. Computers and Fluids, 2018, 167 (8): 229- 240. |
26 | 何雅玲, 李庆, 王勇, 等. 格子Boltzmann方法的工程热物理应用[J]. 科学通报, 2009, 54 (18): 2638- 2656. |
27 | 赵伟峰. 格子Boltzmann方法的理论分析和边界处理[D]. 北京: 中国工程物理研究院, 2017: 139. |
28 | AKSHAY G, TAYFUN B, SUSANTA S R. Pore-scale interfacial dynamics and oil-water relative permeabilities of capillary driven counter-current flow in fractured porous media[J]. Journal of Petroleum Science and Engineering, 2013, 103 (3): 106- 114. |
29 |
李仁民, 刘松玉, 方磊, 等. 采用随机生长四参数生成法构造黏土微观结构[J]. 浙江大学学报(工学版), 2010, 44 (10): 1897- 1901.
DOI |
30 | 李祯. 致密储层中流体流动的LBM模拟[D]. 青岛: 中国石油大学(华东), 2016: 73. |
31 | ZHENG Jiangtao, CHEN Zhiqiang, XIE Chiyu, et al. Characterization of spontaneous imbibition dynamics in irregular channels by mesoscopic modeling[J]. Computers and Fluids, 2018, 168 (9): 21- 31. |
32 |
YANG L, WANG S, CAI Jianchao, et al. Main controlling factors of fracturing fluid imbibition in shale fracture network[J]. Capillarity, 2018, 1 (1): 1- 10.
DOI |
33 | 蔡建超, 郁伯铭. 多孔介质自发渗吸研究进展[J]. 力学进展, 2012, 42 (06): 735- 754. |
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