Hello Joaquim G. Detoni
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Posted:
1 decade ago
2011年7月5日 GMT-4 09:51
Hi Joaqui,
at first: nice example of an EC-Motor! I searched and already asked comsol support for such an example.
Back to Topic:
I am investigating the magnetic energy of linear actuators e.g. tubular solenoids or magnetic clamps.
I also experienced strange results and therefore contacted comsol support.
The problem with comsol is, that magnetic energy is calculated with a linear approach by default!!!
I do not know, which version of comsol you are using right now, but with version 4 and later you can check this fact by activating the equation view and search in the corresponding Ampere's Law node for variable mf.Wm. As told before it normally is calculated by mf.Wm = 0.5*(mf.Bx*mf.Hx+mf.By*mf.Hy+mf.Bz*mf.Hz), which is only correct for linear magnetic materials. For any non linear magnetic Material it is necessary to define a function (interpolation table) for magnetic energy density. You can calcualte the the magnetic energy density out of the BH - or HB - curve of the corresponding material by integrating H dB. Then you need to integrate the energy density over all domains of the model to get the total amount of magnetic energy. So far seems to work fine, but proving forces by virtual work approach I get forces wich are less than half of comsol results!?! Testing forces by virtual work with just linear materials works perfekt.
I got the feeling, that there might be a bug in the software. I will contact comsol support again help and advice....
Best regards
Oliver Vogel
I attached a file, so you can explore it yourself.
Hi Joaqui,
at first: nice example of an EC-Motor! I searched and already asked comsol support for such an example.
Back to Topic:
I am investigating the magnetic energy of linear actuators e.g. tubular solenoids or magnetic clamps.
I also experienced strange results and therefore contacted comsol support.
The problem with comsol is, that magnetic energy is calculated with a linear approach by default!!!
I do not know, which version of comsol you are using right now, but with version 4 and later you can check this fact by activating the equation view and search in the corresponding Ampere's Law node for variable mf.Wm. As told before it normally is calculated by mf.Wm = 0.5*(mf.Bx*mf.Hx+mf.By*mf.Hy+mf.Bz*mf.Hz), which is only correct for linear magnetic materials. For any non linear magnetic Material it is necessary to define a function (interpolation table) for magnetic energy density. You can calcualte the the magnetic energy density out of the BH - or HB - curve of the corresponding material by integrating H dB. Then you need to integrate the energy density over all domains of the model to get the total amount of magnetic energy. So far seems to work fine, but proving forces by virtual work approach I get forces wich are less than half of comsol results!?! Testing forces by virtual work with just linear materials works perfekt.
I got the feeling, that there might be a bug in the software. I will contact comsol support again help and advice....
Best regards
Oliver Vogel
I attached a file, so you can explore it yourself.
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Posted:
8 years ago
2016年12月7日 GMT-5 18:02
Hi guys,
Any updates on this issue ? I hit the same problem now and I just cannot get the virtual work force right for non-linear magnetic materials
Hi guys,
Any updates on this issue ? I hit the same problem now and I just cannot get the virtual work force right for non-linear magnetic materials
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Posted:
8 years ago
2016年12月8日 GMT-5 04:52
Hi,
as u can see, it has been a while, when I was working on this topic.
I did a paper for a comsol conference (Theory of proportional magnet and magentic force calculation) in which I also presentet some virtual work results.
So surely I finally got it running with the approach I postet above.
Maybe I can help u with an old model,
but I need some time to check my old files and then get back to you.
Best regards
Oliver
Hi,
as u can see, it has been a while, when I was working on this topic.
I did a paper for a comsol conference (Theory of proportional magnet and magentic force calculation) in which I also presentet some virtual work results.
So surely I finally got it running with the approach I postet above.
Maybe I can help u with an old model,
but I need some time to check my old files and then get back to you.
Best regards
Oliver
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Posted:
8 years ago
2016年12月8日 GMT-5 05:03
Hi Oliver,
Thank you very much.
I think I have just got it to work a moment ago (I think).
I am not entirely sure yet until I run a full test tomorrow. I will let you know the result.
Cheers
Ning
Hi Oliver,
Thank you very much.
I think I have just got it to work a moment ago (I think).
I am not entirely sure yet until I run a full test tomorrow. I will let you know the result.
Cheers
Ning