Releases: arfc/moltres
Releases · arfc/moltres
Add CHI_D; some minor changes for publication
- Add energy binning through CHI_D for energy distribution of neutrons resulting from delayed production
- Change some chained if-else to switch-case statements
- Make NtAction compatible with new block restrictions in MOOSE
- Perform Picard iterations with coupled neutronics and temperature (no delayed precursors)
- Solve does not converge
- Full coupling (single matrix) required to converge such tightly coupled physics
3D steady-state and 2D transient capabilities
This update adds capabilities and inputs for:
- 3D steady state
- 2D loss of secondary cooling transient
- 2D loss of flow transient
- 2D control rod ejection transient
- 2D > 2 group calculations
Initial Moltres release
Functionality included in the initial Moltres release is fully-coupled simulation of multi-group neutrons, temperature, and drifting precursors in 2D-axisymmetric models of Molten Salt Reactors. Kernels and boundary conditions are dimension agnostic and can be run for 1, 2, and 3 dimensions. However, computationally efficient simulation of 3D geometries has yet to be demonstrated.