YALES2

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Motivation

YALES2 aims at the solving of two-phase combustion from primary atomization to pollutant prediction on massive complex meshes. It is able to handle efficiently unstructured meshes with several billions of elements, thus enabling the Direct Numerical Simulation of laboratory and semi-industrial configurations.

YALES2 is maintained by V. Moureau, G. Lartigue and D. Taieb at CORIA and several other people in research laboratories.

Solvers

YALES2 is based on a large numerical library to handle partitioned meshes, various differential operators or linear solvers, and on a series of simple or more complex solvers.

  • Scalar solver (SCS)
  • Level set solver (LSS)
  • Incompressible solver (ICS)
  • Variable density solver (VDS)
  • Spray solver (SPS = ICS + LSS + Ghost-Fluid Method)
  • Lagrangian solver (LGS)
  • Compressible solver (ECS)
  • Magneto-hydrodynamic solver (MHD)
  • Mesh movement solver (MMS)
  • Radiative solver (RDS)
  • Linear acoustics solver (ACS)
  • Heat transfers solver (HTS)