Validation of LBM simulation of saturated seepage flow through 3D-printed homogeneous porous medium for fluid-particle coupled analysis

被引:5
|
作者
Kitao, Tomohiro [1 ]
Fukumoto, Yutaka [2 ]
Fujisawa, Kazunori [3 ]
Jewel, Arif [3 ]
Murakami, Akira [3 ]
机构
[1] Minist Agr Forestry & Fisheries, Tokyo, Japan
[2] Nagaoka Univ Technol, Dept Civil & Environm Engn, Nagaoka, Niigata, Japan
[3] Kyoto Univ, Grad Sch Agr, Kyoto, Japan
关键词
3D printer; Flow in porous media; Lattice Boltzmann Method; LATTICE-BOLTZMANN METHOD; IMMERSED MOVING BOUNDARY; NON-DARCY FLOW; SETTLING VELOCITY; SOLID INTERACTION; DRAG COEFFICIENT; GRANULAR SOILS; PACKED-BEDS; MODEL;
D O I
10.1007/s11440-021-01210-z
中图分类号
P5 [地质学];
学科分类号
0709 ; 081803 ;
摘要
The accuracy of the pore-scale intergranular flow analysis by the lattice Boltzmann method (LBM), with the aid of the discrete element method (DEM), is investigated and compared with the experimental results of saturated seepage flows. Due to its simplicity and computational efficiency, a regularized Bhatnagar-Gross-Krook model is employed for the LBM to increase the numerical stability. After examining the performance of the numerical method by two well-known problems, namely the Hagen-Poiseuille flow and the flow past a stationary single sphere, a pore-scale numerical simulation of the saturated seepage flow is conducted. Permeability tests are carried out with an artificial porous medium prepared by a 3D printer, consisting of a sufficient number of resin particles. The experimental results are compared with those of the LBM numerical simulation, in which the pore structure of the porous medium is reproduced by the DEM. The numerical results are seen to have properly predicted the macroscopic properties obtained by the permeability tests, which have shown the prominent applicability of the LBM-DEM analysis to pore-scale intergranular fluid flows.
引用
收藏
页码:2643 / 2656
页数:14
相关论文
共 27 条
  • [1] Validation of LBM simulation of saturated seepage flow through 3D-printed homogeneous porous medium for fluid-particle coupled analysis
    Tomohiro Kitao
    Yutaka Fukumoto
    Kazunori Fujisawa
    Arif Jewel
    Akira Murakami
    Acta Geotechnica, 2021, 16 : 2643 - 2656
  • [2] Fluid Flow Study in a 3D-Printed Heterogeneous Porous Medium Filled with Carbonate Rock Particles
    da Silva, Elivaldo Sapucaia
    Fontana, Eliton
    Luz, Luiz Fernando de Lima
    CHEMICAL ENGINEERING & TECHNOLOGY, 2024, 47 (05) : 831 - 840
  • [3] 2-D coupled fluid-particle numerical analysis of seepage failure of saturated granular soils around an embedded sheet pile with no macroscopic assumptions
    Fukumoto, Yutaka
    Yang, Hongxuan
    Hosoyamada, Tokuzo
    Ohtsuka, Satoru
    COMPUTERS AND GEOTECHNICS, 2021, 136
  • [4] Abrasive flow finishing of 3D-Printed Aerofoils: Design, numerical Simulation, and experimental analysis
    Hashmi, Abdul Wahab
    Ahmad, Shadab
    Mustafa, Md Gulam
    Tian, Yebing
    Iqbal, Faiz
    Mali, Harlal Singh
    Kamyab, Hesam
    Yusuf, Mohammad
    OPTICS AND LASER TECHNOLOGY, 2024, 174
  • [5] Fluid flow through 3D-printed particle beds: a new technique for understanding, validating, and improving predictability of permeability from empirical equations
    Sondre Gjengedal
    Vegard Brøtan
    Ole T. Buset
    Erik Larsen
    Olav Å. Berg
    Ole Torsæter
    Randi K. Ramstad
    Bernt O. Hilmo
    Bjørn S. Frengstad
    Transport in Porous Media, 2020, 134 : 1 - 40
  • [6] Fluid flow through 3D-printed particle beds: a new technique for understanding, validating, and improving predictability of permeability from empirical equations
    Gjengedal, Sondre
    Brotan, Vegard
    Buset, Ole T.
    Larsen, Erik
    Berg, Olav A.
    Torsaeter, Ole
    Ramstad, Randi K.
    Hilmo, Bernt O.
    Frengstad, Bjorn S.
    TRANSPORT IN POROUS MEDIA, 2020, 134 (01) : 1 - 40
  • [7] Analysis of the Laminar Newtonian Fluid Flow Through a Thin Fracture Modelled as a Fluid-Saturated Sparsely Packed Porous Medium
    Pazanin, Igor
    Siddheshwar, Pradeep G.
    ZEITSCHRIFT FUR NATURFORSCHUNG SECTION A-A JOURNAL OF PHYSICAL SCIENCES, 2017, 72 (03): : 253 - 259
  • [8] Coupled CFD-DEM simulation of interfacial fluid-particle interaction during binder jet 3D printing
    Wagner, Joshua J.
    Higgs III, C. Fred
    COMPUTER METHODS IN APPLIED MECHANICS AND ENGINEERING, 2024, 421
  • [9] 3D-Printed Hydrodynamic Focusing Lab-on-a-Chip Device for Impedance Flow Particle Analysis
    Desagani, Dayananda
    Kleiman, Shani
    Zagardan, Teddy
    Ben-Yoav, Hadar
    CHEMOSENSORS, 2023, 11 (05)
  • [10] High Performance Simulation of Complicated Fluid Flow in 3D Fractured Porous Media with Permeable Material Matrix Using LBM
    Gao, Jinfang
    Xing, H. L.
    HIGH PERFORMANCE COMPUTING FOR COMPUTATIONAL SCIENCE - VECPAR 2012, 2013, 7851 : 93 - 104