Chapter 6 Solid Conductor Workshop 5. Training Manual Electromagnetic Analysis in Workbench March 4,...
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Transcript of Chapter 6 Solid Conductor Workshop 5. Training Manual Electromagnetic Analysis in Workbench March 4,...
Chapter 6
Solid Conductor
Workshop 5
March 4, 2005Inventory
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Training Manual
Electromagnetic Analysis in Workbench
• Workshop #5: Solid Conductor
• A DC energized coil is wrapped around a permeable C core. The geometry of the core and coil are available on a parasolids file and are imported into Workbench. The geometry is cut in half and the resulting half symmetry model is solved. The current distribution in conductors modeled in this manner is that of a DC energized solid conductor (NOT uniform over the cross section as with stranded conductors and NOT subject to redistribution due to the skin effect).
• Although the current distribution is that of a single turn solid conductor, the number of turns specified for such conductors may be greater than one. Error introduced by approximating stranded coils in this manner is usually acceptable for most applications.
C Core with DC energized coil
Current distribution in coil
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Training Manual
Electromagnetic Analysis in Workbench
• Import parasolids geometry on file magnet_assem.x_t.
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Training Manual
Electromagnetic Analysis in Workbench
• Create a spherical enclosure with a 225 mm cushion. Ensure that the “Merge Parts?” value is set to “Yes”.
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Training Manual
Electromagnetic Analysis in Workbench
• We wish to create a half symmetry model. In order to cut the imported geometry, it must first be “frozen”.
C Core with DC energized coilCurrent distribution in coil
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Training Manual
Electromagnetic Analysis in Workbench
• Create a slice plane. Select the global ZXPlane to be the base plane of the slice.
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Training Manual
Electromagnetic Analysis in Workbench
• Hold the Ctrl button down and use the LMB to select the 3 parts labeled “Solid” in the tree. The RMB will produce the drop down menu shown at right. Select “Suppress Body” to eliminate upper portions of the geometry from further consideration.
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Training Manual
Electromagnetic Analysis in Workbench
• Save the design modeler geometry and click on the Project tab. Select “New Simulation”. Choose Emag Branch in the simulation wizard to help guide you through the simulation process.
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Training Manual
Electromagnetic Analysis in Workbench
• Select “Magnet” in the tree and import SA1010 steel material properties to be associated with it.
• Select “Coil” in the tree and import “Copper Alloy”.
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6Material selection for coil
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Training Manual
Electromagnetic Analysis in Workbench
• Graphically select the core and right click on Mesh in the tree to assign an element size 0f 0.03 to the core.
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Training Manual
Electromagnetic Analysis in Workbench
• Insert another element size specification, this time on the pole face surfaces. Set the pole face size to 0.005 m.
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Training Manual
Electromagnetic Analysis in Workbench
• Insert a conductor under Environment in the tree. Graphically pick the coil and click apply in “Details”. Set the number of turns to 386.
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Training Manual
Electromagnetic Analysis in Workbench
• Insert a zero voltage boundary on the conductor. Graphically pick one of the cut surfaces of the coil and click apply in “Details”.
• Additionally, insert a 50 A current to the other exposed face of the coil on the symmetry plane (not shown).
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Training Manual
Electromagnetic Analysis in Workbench
• Insert a flux parallel boundary condition on the spherical exterior of the enclosure and on the symmetry plane. Hold down the Ctrl button as you use the LMB to pick the surfaces. Click Apply in Details when done.
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Training Manual
Electromagnetic Analysis in Workbench
• Create a selection group by graphically selecting the core and selecting the “Create Selections Group” button. Name the selection magnet. This name will be referenced in a command file that we will read in next. The command file will produce a contour plot of relative permeability as a post processing operation.
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Training Manual
Electromagnetic Analysis in Workbench
• Insert commands under Solutions in the tree. RMB on “Commands” in the tree and import the file mur.txt.
• Click on Solve.
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Training Manual
Electromagnetic Analysis in Workbench
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Plot the calculated flux density.
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Training Manual
Electromagnetic Analysis in Workbench
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Display relative permeability contour created by macro file mur.txt.
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