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A Simple Algorithm To Enforce Dirichlet Boundary Conditions In Complex Geometries

Author

Listed:
  • CHRISTIAN HUBER

    (School of Earth and Atmospheric Sciences, Georgia Institute of Technology, 311 Ferst Drive, Atlanta GA 30332, USA)

  • JOSEF DUFEK

    (School of Earth and Atmospheric Sciences, Georgia Institute of Technology, 311 Ferst Drive, Atlanta GA 30332, USA)

  • BASTIEN CHOPARD

    (Computer Science Department, University of Geneva, CUI, 7 Route de Drize, 1227 Carouge, Switzerland)

Abstract

We present a new algorithm to implement Dirichlet boundary conditions for diffusive processes in arbitrarily complex geometries. In this approach, the boundary conditions around the diffusing object is replaced by the fictitious phase transition of a pure substance where the energy cost of the phase transition largely overwhelms the amount of energy stored in the system. The computing cost of this treatment of the boundary condition is independent of the topology of the boundary. Moreover, the implementation of this new approach is straightforward and follows naturally from enthalpy-based numerical methods. This algorithm is compatible with a wide variety of discretization methods, finite differences, finite volume, lattice Boltzmann methods and finite elements, to cite a few. We show, here, using both lattice Boltzmann and finite-volume methods that our model is in excellent agreement with analytical solutions for high symmetry geometries. We also illustrate the advantages of the algorithm to handle more complex geometries.

Suggested Citation

  • Christian Huber & Josef Dufek & Bastien Chopard, 2011. "A Simple Algorithm To Enforce Dirichlet Boundary Conditions In Complex Geometries," International Journal of Modern Physics C (IJMPC), World Scientific Publishing Co. Pte. Ltd., vol. 22(10), pages 1093-1105.
  • Handle: RePEc:wsi:ijmpcx:v:22:y:2011:i:10:n:s0129183111016774
    DOI: 10.1142/S0129183111016774
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