The front-tracking ALE method: Application to a model of the freezing of cell suspensions

被引:17
|
作者
Jaeger, M
Carin, M
机构
[1] Univ Aix Marseille 1, Polytech Marseilla, Dept Mecan Energet, CNRS,UMR 6595,IUSTI, F-13453 Marseille 13, France
[2] Univ Bretagne Sud, Ctr Rech, F-56321 Lorient, France
关键词
finite element method; front-tracking method; mesh fitting; ALE; cryobiology; solute; osmosis; phase change;
D O I
10.1006/jcph.2002.7084
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
A new front-tracking method to compute discontinuous solutions on unstructured finite element meshes is presented. Using an arbitrary Lagrangian-Eulerian formulation, the mesh is continuously adapted by moving the nearest nodes to the interface. Thus, the solution is completely sharp at the interface and no smearing takes place. The dynamic node adjustment is confined to global nodes near the front, rendering remeshing unnecessary. The method has been applied to the osmotic motion of a two-dimensional cell arising from a concentration gradient generated by a moving solidification front. The engulfrnent of one cell by an advancing solidification front, which rejects the solutes in a binary salt solution, is then computed. The results indicate that the ice increases the solute gradient around the cell. Furthermore, the presence of the cell, which presents diffusion of the solute, leads to large changes in the morphology of the ice front. (C) 2002 Elsevier Science (USA).
引用
收藏
页码:704 / 735
页数:32
相关论文
共 50 条
  • [41] A front-tracking method for two-phase flow simulation with no spurious currents
    Inguva, Venkatesh
    Kenig, Eugeny Y.
    Perot, J. Blair
    JOURNAL OF COMPUTATIONAL PHYSICS, 2022, 456
  • [42] An adaptive, Cartesian, front-tracking method for the motion, deformation and adhesion of circulating cells
    Agresar, G
    Linderman, JJ
    Tryggvason, G
    Powell, KG
    JOURNAL OF COMPUTATIONAL PHYSICS, 1998, 143 (02) : 346 - 380
  • [43] A front-tracking/ghost-fluid method for fluid interfaces in compressible flows
    Terashima, Hiroshi
    Tryggvason, Gretar
    JOURNAL OF COMPUTATIONAL PHYSICS, 2009, 228 (11) : 4012 - 4037
  • [44] A front-tracking method for the simulation of three-phase flow in porous media
    Lie, KA
    Juanes, R
    COMPUTATIONAL GEOSCIENCES, 2005, 9 (01) : 29 - 59
  • [45] Adaptive mesh refinement and front-tracking for shear bands in an antiplane shear model
    Garaizar, FX
    Trangenstein, J
    SIAM JOURNAL ON SCIENTIFIC COMPUTING, 1998, 20 (02): : 750 - 779
  • [46] Discrete Event Front-tracking Simulation of a Physical Fire-spread Model
    Filippi, Jean-Baptiste
    Morandini, Frederic
    Balbi, Jacques Henri
    Hill, David R. C.
    SIMULATION-TRANSACTIONS OF THE SOCIETY FOR MODELING AND SIMULATION INTERNATIONAL, 2010, 86 (10): : 629 - 644
  • [47] A fixed grid front-tracking model of the growth of a columnar front and an equiaxed grain during solidification of an alloy
    Browne, DJ
    Hunt, JD
    NUMERICAL HEAT TRANSFER PART B-FUNDAMENTALS, 2004, 45 (05) : 395 - 419
  • [48] Numerical simulations of Richtmyer-Meshkov instabilities using conservative front-tracking method
    Ullah, M. A.
    Gao, Wen-bin
    Mao, De-kang
    APPLIED MATHEMATICS AND MECHANICS-ENGLISH EDITION, 2011, 32 (01) : 119 - 132
  • [49] A numerical study of drop evaporation at high density ratios using Front-Tracking method
    Najafian, M.
    Mortazavi, M. S.
    COMPUTERS & MATHEMATICS WITH APPLICATIONS, 2023, 134 : 1 - 15
  • [50] Numerical Simulation of an Axisymmetric Compound Droplet by Three-Fluid Front-Tracking Method
    Homma, S.
    Yokotsuka, M.
    Tanaka, T.
    Moriguchi, K.
    Koga, J.
    Tryggvason, G.
    FDMP-FLUID DYNAMICS & MATERIALS PROCESSING, 2011, 7 (03): : 231 - 240