Difference between revisions of "Ecfd:ecfd 4th edition"

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== Mini-workshops ==
 
== Mini-workshops ==
 +
 +
Combustion - O. Vermorel, CERFACS
 +
* H2 combustion
 +
 +
Dynamic mesh adaptation - G. Balarac, LEGI
 +
* anisotropic mesh adaptation
 +
* adaptation criteria for anisotropic mesh adaptation
 +
* adaptation of periodic domains
 +
* unsteady turbulence - turbulent/non-turbulent interfaces
 +
 +
Multi-phase flows - V. Moureau, CORIA
 +
* scalar transport in two-phase flows
 +
* three-phase flows: contact angle
 +
 +
Numerics - G. Lartigue, CORIA
 +
* implicit time integration for compressible/incompressible flows
 +
* higher-order finite-volume schemes
 +
* finite-volume schemes for anisotropic meshes
 +
 +
Porting to GPU - G. Staffelbach, CERFACS
 +
* OpenACC
 +
 +
Turbulent flows - P. Bénard, CORIA
 +
* turbulence injection
 +
* wall modeling
 +
 
 +
User experience - R. Mercier, SAFRAN TECH
 +
* automation & workflows for HPC

Revision as of 18:17, 5 January 2021


Description

Virtual event from 22nd to 26th of March 2021.

Mini-workshops

Combustion - O. Vermorel, CERFACS

  • H2 combustion

Dynamic mesh adaptation - G. Balarac, LEGI

  • anisotropic mesh adaptation
  • adaptation criteria for anisotropic mesh adaptation
  • adaptation of periodic domains
  • unsteady turbulence - turbulent/non-turbulent interfaces

Multi-phase flows - V. Moureau, CORIA

  • scalar transport in two-phase flows
  • three-phase flows: contact angle

Numerics - G. Lartigue, CORIA

  • implicit time integration for compressible/incompressible flows
  • higher-order finite-volume schemes
  • finite-volume schemes for anisotropic meshes

Porting to GPU - G. Staffelbach, CERFACS

  • OpenACC

Turbulent flows - P. Bénard, CORIA

  • turbulence injection
  • wall modeling

User experience - R. Mercier, SAFRAN TECH

  • automation & workflows for HPC