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Simulation of electric and magnetic fields using FEMM - FH Aachen ...

Simulation of electric and magnetic fields using FEMM - FH Aachen ...

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Contents<br />

1. Introduction........................................................................ 8<br />

2. Electrostatics .................................................................... 10<br />

1.1 Cable 1 ......................................................................... 10<br />

1.1.1 Create a new file. ........................................................................ 10<br />

1.1.2 Set problem definition. ............................................................... 10<br />

1.1.3 Create a model ............................................................................ 11<br />

1.1.4 Add materials to the model ......................................................... 12<br />

1.1.5 Define conductor properties ....................................................... 13<br />

1.1.6 Place block labels <strong>and</strong> associate them with corresponding Materials<br />

14<br />

1.1.7 Generate mesh <strong>and</strong> run FEA ....................................................... 15<br />

1.1.8 Display results ............................................................................ 15<br />

1.1.9 Plot field values .......................................................................... 15<br />

1.1.10 Compare with theoretical values ................................................ 18<br />

1.2 Cable 2 ......................................................................... 18<br />

1.2.1 Create a new file. ........................................................................ 18<br />

1.2.2 Set problem definition. ............................................................... 19<br />

1.2.3 Create a new model .................................................................... 19<br />

1.2.4 Add materials to the model ......................................................... 20<br />

1.2.5 Define conductor <strong>and</strong> material properties .................................. 20<br />

1.2.6 Define conductor <strong>and</strong> material properties .................................. 23<br />

1.2.7 Generate mesh <strong>and</strong> run FEA ....................................................... 23<br />

1.2.8 Display results ............................................................................ 24<br />

1.2.9 Plot field values .......................................................................... 24<br />

1.2.10 Compare with the theoretical values .......................................... 25<br />

1.3 Capacitor- Plate .......................................................... 26<br />

1.3.1 Create a new file. ........................................................................ 26<br />

1.3.2 Set problem definition ................................................................ 26<br />

1.3.3 Create a new model .................................................................... 27<br />

1.3.4 Define conductor <strong>and</strong> material properties .................................. 27<br />

1.3.5 Set up the properties <strong>of</strong> materials <strong>and</strong> conductors ...................... 29<br />

1.3.6 Place block labels <strong>and</strong> associate them with corresponding materials<br />

30<br />

1.3.7 Notice ......................................................................................... 30<br />

1.3.8 Generate mesh <strong>and</strong> run analysis ................................................. 30<br />

1.3.9 Plot field values .......................................................................... 31<br />

1.3.10 Compare with theoretical values ................................................ 32<br />

1.4 Capacitor- Cylinder ................................................... 32

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