Robert Koslover
Certified Consultant
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Posted:
6 years ago
2018年8月28日 GMT-4 18:59
Well, I haven't looked at your model, but one issue comes immediately to mind, based on your question: In most cases, for such an approach to work, your problem would need to be axi-symmetric not just in the geometry, but in the computed fields. Is it? If not, you will need to account for the asymmetry analytically, and very very carefully. If you can't do that, then you need to do a 3D treatment. This is more numerically intensive, but you can probably use two planes of symmetry to reduce the size. Good luck.
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Scientific Applications & Research Associates (SARA) Inc.
www.comsol.com/partners-consultants/certified-consultants/sara
Well, I haven't looked at your model, but one issue comes immediately to mind, based on your question: In most cases, for such an approach to work, your problem would need to be axi-symmetric not just in the geometry, but in the computed fields. Is it? If not, you will need to account for the asymmetry analytically, and very very carefully. If you can't do that, then you need to do a 3D treatment. This is more numerically intensive, but you can probably use two planes of symmetry to reduce the size. Good luck.
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Posted:
6 years ago
2018年8月30日 GMT-4 10:49
Hi Robert,
Thanks for the feedback, I believe I have it set up as to have it axi-symmetric in the computed fields. It seems the incident E-Field is induced along the center to make it axi-symmetric too.
However, in the future I do want to make complex shapes that are not axi-symmetric, so I'll keep your comments in mind when I reach that stage.
Regards,
Eric Cutler
Hi Robert,
Thanks for the feedback, I believe I have it set up as to have it axi-symmetric in the computed fields. It seems the incident E-Field is induced along the center to make it axi-symmetric too.
However, in the future I do want to make complex shapes that are not axi-symmetric, so I'll keep your comments in mind when I reach that stage.
Regards,
Eric Cutler