CONTENT
- Introduction
- DYON output
- Files provided
- Running the scripts
- The main files
- IDS core_profiles
- IDS core_sources
- IDS equilibrium
- IDS gas_injection
- IDS magnetics
- IDS radiation
- IDS wall
- Service functions
- DYON input
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File name | Content |
---|---|
put_to_IMAS.m | Function saving IMAS output data to IMAS |
get_from_IMAS.m | Function reading IMAS output data from IMAS |
test_put_to_IMAS.m | Sample script invoking the function put_to_IMAS |
test_get_from_IMAS.m | Sample script that invokes the function get_from_IMAS and compares the recovered data with the initial ones |
put_core_profiles.m | Function saving data to the core_profiles IDS |
put_core_sources.m | Function saving data to the core_sources IDS |
put_equilibrium.m | Function saving data to the equilibrium IDS |
put_gas_injection.m | Function saving data to the gas_injection IDS |
put_magnetics.m | Function saving data to the magnetics IDS |
put_radiation.m | Function saving data to the radiation IDS |
put_wall.m | Function saving data to the wall IDS |
get_core_profiles.m | Function recovering the saved data from the core_profiles IDS |
get_core_sources.m | Function recovering the saved data from the core_sources IDS |
get_equilibrium.m | Function recovering the saved data from the equilibrium IDS |
get_gas_injection.m | Function recovering the saved data from the gas_injection IDS |
get_magnetics.m | Function recovering the saved data from the magnetics IDS |
get_radiation.m | Function recovering the saved data from the radiation IDS |
get_wall.m | Function recovering the saved data from the wall IDS |
arrange_ion_densities.m | |
arrange_neutral_density.m | |
arrange_radiation.m | |
extract_ion_densities.m | |
Running the scripts
To launch the test scripts, do the following:
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In the nodesktop mode, MATLAB should work faster (I did not notice big difference). Using the nodesktop mode, do not forget to run the command 'quit()' to end the session (otherwise, a dangling MATLAB session may remain).
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