%0 Journal Article %T Numerical Simulation of Back Discharge: Influence of Pinhole Geometry on the Regime Transitions %+ Department of Geophysics, Faculty of Mathematics and Physics, %+ Laboratoire des Sciences de l'Ingénieur Appliquées à la Mécanique et au génie Electrique (SIAME) %A Jánský, J. %A Bessières, Delphine %A Paillol, Jean, H. %A Lemont, F. %< avec comité de lecture %@ 0304-3886 %J Journal of Electrostatics %I Elsevier %V 76 %P 238-245 %8 2015 %D 2015 %R 10.1016/j.elstat.2015.05.028 %K Numerical simulation %K Atmospheric-pressure plasma %K Back discharge %K Regime transitions %Z Physics [physics]Journal articles %X This paper presents numerical simulation of back discharge activity that is modelled at a pinhole in a dielectric layer on plane anode. First, for a given pinhole geometry, the transitions between back discharge regimes have been depicted as a mode diagram. Then, we have studied the influence of the dielectric layer thickness on the regime transitions. We have shown that increase in the layer thickness (within range of 0.02\textendash0.2 mm) promotes the back discharge development. Finally, we have studied the influence of `crater configuration'. We have shown that `crater shape' favours the back discharge ignition, whereas limits the resulting discharge development. %G English %L hal-02153529 %U https://univ-pau.hal.science/hal-02153529 %~ UNIV-PAU %~ SIAME