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DC Glow in a planar geometry initialisation
Posted Aug 12, 2017, 11:32 a.m. EDT Plasma Physics, Modeling Tools & Definitions, Parameters, Variables, & Functions, Studies & Solvers Version 5.2a 2 Replies
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I am using the plasma module to model DC glow in argon using electrodes embedded in a substrate covered with a thin polymer film, it is driven by a 750V 1MHz source.
The model seems right but it (Study 2) fails to find consistant initial values even with zero voltage at the terminal suffers from a "divided by zero" error. I cannot figure out how to debug this error.
I have tried steps such as massivley increasing the extent of the argon and substrate regions to avoid significant voltage at the boundries, removing all voltage from the terminal, a variety of initial electron counts and voltages, varying film height and electrode seperation, switching solver, using a finer mesh, and initialising using a stationary solution (which is obviously inapplicable for a plasma simulation). Is there a way to step through the last few itterations of the initialisation to find where the error is occuring?
Can anyone suggest anything which may solve this issue?
The model seems right but it (Study 2) fails to find consistant initial values even with zero voltage at the terminal suffers from a "divided by zero" error. I cannot figure out how to debug this error.
I have tried steps such as massivley increasing the extent of the argon and substrate regions to avoid significant voltage at the boundries, removing all voltage from the terminal, a variety of initial electron counts and voltages, varying film height and electrode seperation, switching solver, using a finer mesh, and initialising using a stationary solution (which is obviously inapplicable for a plasma simulation). Is there a way to step through the last few itterations of the initialisation to find where the error is occuring?
Can anyone suggest anything which may solve this issue?
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2 Replies Last Post Sep 23, 2017, 11:23 a.m. EDT