Good lecture. Helmholtz free energy functional is presented in this presentation, for isothermal thermodynamic process. Will internal energy be better to use for a non-isothermal case?
In solid state problems most always is Gibb's or Helmholtz free energy used. In the solidification problem many researchers tend to use entropy instead.
Check out the MOOSE Framework. It has a module for implementing phase field models (mooseframework.org/wiki/PhysicsModules/PhaseField/). There also is a website that compares open source community codes for phase field simulation (pages.nist.gov/chimad-phase-field/)
Thanks so much, now l study use the PFM to built the tungsten oxide layer, excellent introduction for the PFM
An excellent lecture with nice insights about Phase field method. Thanks to the publisher .
Thanks to the publisher .
Outstanding lecture thank you for uploading it
Good lecture. Helmholtz free energy functional is presented in this presentation, for isothermal thermodynamic process. Will internal energy be better to use for a non-isothermal case?
In solid state problems most always is Gibb's or Helmholtz free energy used. In the solidification problem many researchers tend to use entropy instead.
Very useful and fundamental.
50:54 nono don't worry Peter, you are not on tape
I wonder what software can I use in order to build phase-field model and make calculation? Thanks everyone!
Check out the MOOSE Framework. It has a module for implementing phase field models (mooseframework.org/wiki/PhysicsModules/PhaseField/). There also is a website that compares open source community codes for phase field simulation (pages.nist.gov/chimad-phase-field/)
@@DanielSchwen :Thank you!
@@DanielSchwen I cannot open the second link
@@诚熊 we currently have a Datacenter Power Outage at INL.
Thanks to the publisher.