We have hosted the application tpls in order to run this application in our online workstations with Wine or directly.


Quick description about tpls:

TPLS is a powerful and efficient 3D Direct Numerical Simulation (DNS) flow solver to simulate multiphase flows at unprecedented detail, speed and accuracy.

This flow solver has been developed by Lennon � N�raigh (Mathematical Sciences, University College Dublin), Prashant Valluri (Engineering, University of Edinburgh), David Scott, Toni Collis and Iain Bethune (EPCC at the University of Edinburgh) and Peter Spelt (Universit� de Lyon1, Claude Bernard) under the aegis of several HECToR / ARCHER computer time grants and dCSE/eCSE programmes.

The TPLS solver is highly parallelisable and can simulate flows at ultra high resolution ( > 30 million grid points). Key features are:
1) Ultra-parallelisable MPI
2) ARCHER (> 2048 Cores)
3) Fortran and PETSc subroutines
4) Parallel I/O using NetCDF
5) 3D Decomposition
6) Gas/Liquid density ratios

We also provide a simplified version of the code 'S-TPLS' to help new users understand the code structure and algorithms.

Features:
  • High Resolution DNS solver
  • Level-set interface capturing
  • MPI parallelisation
  • Scales to 1000s of cores
  • Uses Krylov Subspace solution methods from PETSc
  • 3D Decomposition


Audience: Science/Research.

Programming Language: Fortran.
Categories:
Scientific/Engineering

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