25m (a) The tubular rotor shaft of a wind turbine shown in Figure 3(a) is of 50 mm and 40 mm outer and inner diameters respectively, and it is expected to be subjected to the following extreme loading conditions which act simultaneously: A torque of 2.5kNm about the axis. A bending moment of 3.6kNm acting on the vertical plane containing the shaft axis. 3.6 KNm 2-5Nm Figure 3(a) Calculate the following: i. The polar second moment of area, J

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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The tubular rotor shaft of a wind turbine shown in Figure 3(a) is of 50
mm and 40 mm outer and inner diameters respectively, and it is
expected to be subjected to the following extreme loading conditions
which act simultaneously:
(a)
A torque of 2.5kNm about the axis.
A bending moment of 3.6kNm acting on the vertical plane
containing the shaft axis.
A
3.6 ENm
2-5m
Figure 3(a)
Calculate the following:
i.
The polar second moment of area, J
Transcribed Image Text:The tubular rotor shaft of a wind turbine shown in Figure 3(a) is of 50 mm and 40 mm outer and inner diameters respectively, and it is expected to be subjected to the following extreme loading conditions which act simultaneously: (a) A torque of 2.5kNm about the axis. A bending moment of 3.6kNm acting on the vertical plane containing the shaft axis. A 3.6 ENm 2-5m Figure 3(a) Calculate the following: i. The polar second moment of area, J
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