Solver Equation
Drop down list for the equation to be solved. Available are the following types:
Magnetoquasistatic |
The electric displacement current will be neglected in Ampere's law. |
Electroquasistatic |
The change of magnetic flux is neglected in Faraday's law of induction. This option is currently only available for the tetrahedral mesh type. |
Fullwave |
No time dependencies are neglected, but this option is usually the most time consuming one. |
Mesh Type
Drop down list for the meshing method to use for the simulation. Available are hexahedral and tetrahedral meshes.
Accuracy
Drop down list for solver accuracy setting.
Store result data in cache
Indicates if all models and results during a mesh adaptation, parameter sweep or optimization are stored in subfolders or not.
Source Value Scaling
This frame allows to define the way in which low frequency harmonic current or field sources are specified. If RMS is selected, then all input values are considered to be the root-mean-square values. The Peak option can be used to specify the amplitude of sources directly.
Please note: The computed fields and related template results are always presented as Peak values.
Adaptive mesh refinement frame
Adaptive mesh refinement
Check to activate the adaptive mesh refinement.
Properties…
Opens the adaptive mesh refinement properties dialog.
Start
Starts the LF frequency domain solver with the current settings.
Optimize…
Opens the Optimization dialog.
Par. Sweep…
Opens the Parameter Sweep dialog.
Acceleration...
Opens the acceleration dialog box to control the high performance options of the simulation run (e.g. CPU multithreading or Distributed Computing).
Specials...
Opens the LF frequency domain solver specials dialog.
Simplify Model...
Opens the dialog to globally reduce the complexity of the model.
Apply
Stores the current settings without closing the dialog box.
Close
Closes this dialog box without performing any further action.
Help
Shows this help text.
See also
LF Frequency Domain Solver Overview, Adaptive Mesh refinement, Optimization