TAGGED: 2D, electromagnetic, force, maxwell, region
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January 2, 2021 at 6:19 pm
johnfides
SubscriberI implemented the same example as 'Instantaneus Forces on Busbars in Maxwell 2D' in Ansys Maxwell Field Simulator v15 users guide. I realized that when I change the size of the region in the example, the force results also change. What size should I do in order to get the right force result? What is the rule of this? How can I find out the correct region size?nCould you please help Thanks.nnote:Example is on eddy current solver.n -
January 4, 2021 at 1:00 pm
Navya C
Ansys EmployeeHi,nAre you reducing or increasing the region size?nAs long as the region is sufficient enough to cover the whole field distribution you should get the same result for anything Region size above that region size.nBut if you are reducing the computational region such that it is not fully enclosing the whole magnetic field you will get a difference in results.nYou can plot the fields and check if all the dominant filed lines are enclosed in the region to figure this out.nnRegardsnNavyan -
January 5, 2021 at 8:56 am
johnfides
SubscriberHi nchode,nForce change based on region y size;n+Y&-Y: 50...F=154kNn+Y&-Y: 200...F=51kNn+Y&-Y: 300..F=33kNn+Y&-Y: 500...F=17kNn+Y&-Y: 800...F=9600kNn+Y&-Y: 1000...F=9986kNn+Y&-Y: 1500...F=12515kNn+Y&-Y: 2000...F=13615kNn+Y&-Y: 2500...F=15600k -
January 5, 2021 at 11:19 am
Navya C
Ansys Employee@johnfides nI tried doing a similar instantaneous force setup using the eddy current solver. I did not find any change in the force magnitude with an increase in the region size.nCan you please confirm if you got the same result as shown in the tutorial if you follow the tutorial?nIf it is not, please share the comparison screenshots of the tutorial with your result.nAlso, confirm which version of AEDT are you using?.RegardsnNavyan -
January 6, 2021 at 5:37 am
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January 6, 2021 at 10:42 am
Navya C
Ansys EmployeeHi johnfides nCan you provide more details regarding your model?nHow much is the current excitation? How is your setup? how are you assigning force parameter? boundary conditions etc.,nForce parameter should never vary with an increase in the region size.nWithout knowing the specifics of your model it is difficult to assist. nI suggest you do this exercise starting with what is exactly in the tutorial and increase the conductor number in steps of one to understand the problem.nnRegardsnNavyan -
January 6, 2021 at 11:24 am
johnfides
SubscriberHi,nIn my model, I have actually defined a force parameter for only 2 groups, not for all sections as below. I select each section one by one and apply current. my current is 9kA. my setup;(eddy current solver)nmax number of passes: 20npercent error: 0.01nrefinement per pass: 30nmin number of passes: 2nmin converged passes: 1nsolver: 50 Hznnonlinear residual: 0.0001nfreq sweep;nstart: 10 Hznstop: 1000Hznstep: 10 HznI assigned boundary as a vector potantial value:0, Phase:0nn
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January 6, 2021 at 11:48 am
Navya C
Ansys EmployeeHi, ncan you first confirm whether you are getting the same result as the tutorial with a single conductor?nAnd is the result varying with region increase in that case?nJust want to make sure what you and I got is the same. nAs I said, I did not face this issue with region change for a single conductor.nI do not have Maxwell 15 installed, that very old version.nYou can also try installing a latest version of AEDT (2020 R2)n -
January 6, 2021 at 11:53 am
johnfides
SubscriberHi,nIs it normally like this, as the region increases, the force decreases, and then the force value remains constant, no matter how much the region increases.?nThanks,n -
January 6, 2021 at 12:18 pm
Navya C
Ansys EmployeeThe problem region is the region where Maxwell calculates the field solution. It is just enough that Region size (solution space) be chosen such that the respective region walls are not close to field sources(current or permanent magnets). This allows us to assume the field is a tangent at the region limits. The region must be given sufficient room for fringing.nFor example, if the magnetic fields are well-contained, as in motor, the padding can be 20-50%. However, if the magnetic fields are not well-contained, such as two parallel current-carrying conductors in air, the padding may need to be 1000% or more.n*If the field results change significantly when the region size is changed, the region is not large enough.  nIf you have this create region option in Maxwell 15 use this option and pad all the directions to around 1000%. then you should not see this issue.nYou can check by increasing padding all the way to 2000% - you should not see any difference in result.n
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January 6, 2021 at 12:38 pm
johnfides
SubscriberHi,nI will try what you say. Thanks for your patience and help.nI read this in ansys maxwell help;nTypical boundary conditionsused in eddy current problems include magnetic field tangent(the default, natural boundary condition which is automatically applied on all surfaces of the problem space -the surfaces of the geometry entity containing the model inside it). This default boundary condition can be overwritten if other boundary conditions are applied on exterior surfaces of the solution space. The default boundary condition confines the magnetic field to the solution space and thus this boundary must be placed at some distance from the sources of the problem to avoid over-constraining the fields by placing the boundaries to close to the model objects. While it is difÂficult to provide recipes with general validity on the placement of the boundaries of problems, a good rule of thumb says that if a model can be imagined as being contained in a sphere of radius R, the boundaries can be placed at a 4-5 radii R from the imaginary center of the model.nAccording to this explanation, is the radius definition that I will create for the region that I show in the picture below?nnn
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January 6, 2021 at 12:48 pm
Navya C
Ansys EmployeeI suggest you run a parametric starting from 2r to 20r region size ..nAt some regions, maybe at 5r, hopefully, you will not see the difference in the result after that.n -
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