Adoption of Homotopy Perturbation Method (HPM) for non-Darcy Flow in Porous Media

被引:0
作者
Amirhossein Arvin
Mohammad Hadi Fattahi
Mohammad Sedghi-Asl
Seyyed Abbas Mohammadi
机构
[1] Islamic Azad University,Dept. of Civil Engineering, Marvdasht Branch
[2] Yasouj University,Dept. of Soil Science, College of Agriculture
[3] University of The Witwatersrand,School of Computer Science and Applied Mathematics
来源
KSCE Journal of Civil Engineering | 2023年 / 27卷
关键词
Analytical solution; Non-darcy flow; Rounded and crushed porous media; Homotopy Perturbation Method;
D O I
暂无
中图分类号
学科分类号
摘要
For non-Darcy flow in coarse porous media, an analytical solution based on the Homotopy Perturbation Method (HPM) is proposed. Subsurface water profile data of a laboratory model are used for six different inlet discharges in both rounded and crushed coarse porous media types. The model slope is S = 0.00001 close to the horizon. Different upstream and downstream water level boundary conditions are considered. The results of the analytical solution of non-Darcy flow by the HPM method are compared with experimental data. The normal objective function (NOF) is used for better comparison between the results of analytical solutions and experimental data. Results depict that the HPM method provides acceptable solutions in both rounded and crushed media types. The analytical results of flow rates q = 26.25 lit/s with NOF of 0.000294586 percent in rounded porous media and q = 30 lit/s with NOF of 0.00028660 percent in crushed one are the most consistent with the experimental data. The proposed HPM solution performs very well, particularly at higher flow rates, in both rounded and crushed porous media.
引用
收藏
页码:1551 / 1557
页数:6
相关论文
共 50 条
[21]   Upscaling LBM-TPM simulation approach of Darcy and non-Darcy fluid flow in deformable, heterogeneous porous media [J].
Chaaban, Mohamad ;
Heider, Yousef ;
Markert, Bernd .
INTERNATIONAL JOURNAL OF HEAT AND FLUID FLOW, 2020, 83
[22]   Upscaling Non-Darcy Flow [J].
C. R. Garibotti ;
M. Peszyńska .
Transport in Porous Media, 2009, 80 :401-430
[23]   Characterization of a Non-Darcy Flow and Development of New Correlation of NON-Darcy Coefficient [J].
Elsanoose, Abadelhalim ;
Abobaker, Ekhwaiter ;
Khan, Faisal ;
Rahman, Mohammad Azizur ;
Aborig, Amer ;
Butt, Stephen D. .
ENERGIES, 2022, 15 (20)
[24]   The impact of porous media heterogeneity on non-Darcy flow behaviour from pore-scale simulation [J].
Muljadi, Bagus P. ;
Blunt, Martin J. ;
Raeini, Ali Q. ;
Bijeljic, Branko .
ADVANCES IN WATER RESOURCES, 2016, 95 :329-340
[25]   Assessing Porous Media Permeability in Non-Darcy Flow: A Re-Evaluation Based on the Forchheimer Equation [J].
Tupin, Simon ;
Ohta, Makoto .
MATERIALS, 2020, 13 (11)
[26]   A new fractal pore-throat chain model for non-Darcy flow through porous media [J].
Xu, Peng ;
Li, Zhiqiang ;
Wang, Jinqing ;
Chen, Qing ;
Qiu, Shuxia .
ADVANCES IN WATER RESOURCES, 2024, 192
[27]   Soft computing-based nonlinear fusion algorithms for describing non-Darcy flow in porous media [J].
Nazemi, A. -R. ;
Hosseini, S. M. ;
Akbarzadeh-T, M. -R. .
JOURNAL OF HYDRAULIC RESEARCH, 2006, 44 (02) :269-282
[28]   Pore-network modelling of transverse dispersion in porous media under non-Darcy flow conditions [J].
El-Zehairy, A. A. ;
Abdel-Gawad, H. A. A. .
ADVANCES IN WATER RESOURCES, 2024, 185
[29]   Adoption of Extended Dupuit-Forchheimer Assumptions to Non-Darcy Flow Problems [J].
Sedghi-Asl, Mohammad ;
Ansari, Isaac .
TRANSPORT IN POROUS MEDIA, 2016, 113 (03) :457-469
[30]   LATTICE BOLTZMANN SIMULATION OF NON-DARCY FLOW IN STOCHASTICALLY GENERATED THREE-DIMENSIONAL GRANULAR POROUS MEDIA [J].
Xie, Jun ;
Li, Qian ;
Li, Tao ;
Zhao, Zihan .
JOURNAL OF POROUS MEDIA, 2021, 24 (06) :93-104