Output for the example ALPHIE_Grid. Found an issue when multiple injections were used with species with different time steps. Modification to the way to compute the ionization boundary: The maximum number of ionizations is computed by eRel/eThreshold (relative energy / threshold of ionization) For each possible ionization, the probability of ionization is computed based on the density of neutrals, cross section and effective time divided by the number of maximum ionizations. If an ionization takes place, the ionization energy is substracted from the relative energy. |
||
|---|---|---|
| .. | ||
| output | ||
| inputBaseCase.json | ||
| inputIonization_0.10mA.json | ||
| mesh.geo | ||
| mesh.msh | ||
| README.txt | ||
Alphie grid system. The file mesh.geo can be easily modified to generate new grids to test different configurations. Two cases are provided: Clasical case in which ions and electrons are input from the ionization chamber. Ionization case in which ion-electron pairs are generated due to the influx of electrons using the Ionization boundary condition.