WIMAS-2 Weekly Meeting

Europe/Berlin
https://kth-se.zoom.us/j/7764082514

https://kth-se.zoom.us/j/7764082514

Thomas Jonsson
Description

WIMAS-2 Weekly Meeting are technical meetings to plan and coordinate the development of the ETS-6 workflow.

 

Remote participation:

https://kth-se.zoom.us/j/7764082514

Thomas

Minutes from the Weekly WIMAS-2 Meeting, 13 May 2020

1. Actions from last meeting

See the tab Actions from WIMAS-2 Meetings in:
   https://docs.google.com/spreadsheets/d/1Ps-cGQyKNsYTObCr5Kqu58bXBNQdH45Fjpz5QD0hLB0/edit?usp=sharing

Comments:

Alexei: The question on how to handle non-quasi-neutral sources in a transport solver is a non-trivial problem that require more careful investigations. 

Dave/Thomas: This is not a top priority this year.

2. FEM Solver

Alexei had a question on the conservation properties of the weak formulation. Anna will try to formulate an answer (this was formulated as an action 2 weeks ago).

Pär had comments on how to factorise the transport equations to avoid singularities. The equations in the ETS are already factorised.

ACTION:

  1. Anna/Thomas: Add Anna's documentation to the ETS documentation.

3. Transferring ETS-5 developments to the ETS-6

3.1. Hyper-diffusion

Dave commented that we may consider evaluating the advection term using the previous iteration instead of the previous time-step.

ACTION:

  1. Unknown: Test hyper-diffusion in the ETS-5 for various solutions.
  2. David Coster (to be confirmed): Build a standalone test bench for hyperdiffusion.
  3. Team: Design hyper-diffusion for the ETS-6.
  4. Team: Implement hyper-diffusion for the ETS-6.

3.2. Internal boundary conditions and pedestal predictions

Question: Could we make use of lessons learned from JINTRAC and ASTRA?

Answer: We seems to have fairly good understanding of how it's been implemented in JINTRAC. Dave also has a report on this. The strategy forward is to test our envisaged solution in ETS-5 and contact the JINTRAC team if needed.

Rui: The solution using a neural network problem cannot be used with pellets.

Dave: It is now important to follow up on Dmitriy's presentation.

ACTION:

  1. Team: Design internal boundary conditions for the ETS-6.
  2. Team: Implement internal boundary conditions for the ETS-6.
  3. Team: Implement Andreas neural network model for the edge in the ETS-6.

4. Any other business

All critical people needed for the WIMAS-2 Sprint 18-19 May 2020 are available. As it's a short sprint we'll focus on WIMAS-2.

Everyone should start preparing for 2020 and their answer to the TSVV call.

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