Fig. 5. Experimental model of axial-flux generator (a), the
rotor (b) Stator (v).
Fig. 6. General view of the axial generator in the ansys
maxwell programm.
Fig. 7. Side view of the axial generator in ansys maxwell
programm.
Fig. 8. Stator of the axial generator view in the ansys maxwell
programm.
Fig. 9. Rotor of the axial generator view in the ansys maxwell
programm.
In the virtual generator model in the Ansys Maxwell
program, all the components used the materials provided
by the program. The properties of materials in the
program are equated to properties of materials in real
life. For example, permanent magnets in a virtual model
with a magnetic induction of 1099 T were chosen for
permanent magnetic properties of the NdFe35 type. By
means of standard calculations in the program, all the
characteristics of the generator are checked in a magnetic
field and the results are obtained. In the virtual model,
the magnetic field is disconnected from the generator for
a better view of the movement of power lines. The
vectors of the magnetic field strength resulting from the
shift and the quantitative distribution of the magnetic
field are presented in the colored sections [23-24].
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