4.7 Article

Large-scale parallel lattice Boltzmann-cellular automaton model of two-dimensional dendritic growth

期刊

COMPUTER PHYSICS COMMUNICATIONS
卷 185, 期 3, 页码 939-947

出版社

ELSEVIER
DOI: 10.1016/j.cpc.2013.09.013

关键词

Solidification; Dendrite growth; Lattice Boltzmann; Cellular automaton; Parallel computing

资金

  1. US Army Corps of Engineers [W912HZ-09-C-0024]
  2. National Science Foundation [CBET-0931801]
  3. NSF XSEDE allocations [TG-ECS120004, TG-ECS120006]

向作者/读者索取更多资源

An extremely scalable lattice Boltzmann (LB)-cellular automaton (CA) model for simulations of two-dimensional (2D) dendritic solidification under forced convection is presented. The model incorporates effects of phase change, solute diffusion, melt convection, and heat transport. The LB model represents the diffusion, convection, and heat transfer phenomena. The dendrite growth is driven by a difference between actual and equilibrium liquid composition at the solid-liquid interface. The CA technique is deployed to track the new interface cells. The computer program was parallelized using the Message Passing Interface (MPI) technique. Parallel scaling of the algorithm was studied and major scalability bottlenecks were identified. Efficiency loss attributable to the high memory bandwidth requirement of the algorithm was observed when using multiple cores per processor. Parallel writing of the output variables of interest was implemented in the binary Hierarchical Data Format 5 (HDF5) to improve the output performance, and to simplify visualization. Calculations were carried out in single precision arithmetic without significant loss in accuracy, resulting in 50% reduction of memory and computational time requirements. The presented solidification model shows a very good scalability up to centimeter size domains, including more than ten million of dendrites. Program summary Program title: 2Ddend Catalogue identifier: AEQZ_v1_0 Program summary URL: http://cpc.cs.qub.ac.uk/summaries/AEQZ_v1_0.html Program obtainable from: CPC Program Library, Queen's University, Belfast, UK Licensing provisions: Standard CPC license, http://cpc.cs.qub.ac.uk/licenceilicence.html No. of lines in distributed program, including test data, etc.: 29,767 No. of bytes in distributed program, including test data, etc.: 3131,367 Distribution format: tar.gz Programming language: Fortran 90. Computer: Linux PC and clusters. Operating system: Linux. Has the code been vectorized or parallelized?: Yes. Program is parallelized using MPI. Number of processors used: 1-50,000 RAM: Memory requirements depend on the grid size Classification: 6.5, 7.7. External routines: MPI (http://www.mcs.anl.gov/research/projects/mpia HDF5 (http://www.hdfgroup.org/HDF5/) Nature of problem: Dendritic growth in undercooled Al-3 wt% Cu alloy melt under forced convection. Solution method: The lattice Boltzmann model solves the diffusion, convection, and heat transfer phenomena. The cellular automaton technique is deployed to track the solid/liquid interface. Restrictions: Heat transfer is calculated uncoupled from the fluid flow. Thermal diffusivity is constant. Unusual features: Novel technique, utilizing periodic duplication of a pre-grown incubation domain, is applied for the scaleup test. Running time: Running time varies from minutes to days depending on the domain size and number of computational cores. (C) 2013 Elsevier B.V. All rights reserved.

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