About The function of the upper and lower wind guide rings of the generator
generator of a typical underhung hydroelectric unit. It has a thrust bearing located above the generator rotor and also has upper and lower generator guide bearings. Typically, the upper guide bearing is located just above the thrust bearing. In many cases, the outer circumference of the thrust runner serves as the upper guide.
generator of a typical underhung hydroelectric unit. It has a thrust bearing located above the generator rotor and also has upper and lower generator guide bearings. Typically, the upper guide bearing is located just above the thrust bearing. In many cases, the outer circumference of the thrust runner serves as the upper guide.
The generator is designed to be used with a maximum inclination angle of 6° compared to a horizontal reference (DE higher than NDE). In function of the terminal box design and location, there are 2 or 4 lugs to lift the machine. Note: refer to the nameplate or to your machine specific technical documentation for its weight.
In conventional wind turbines, the blades spin a shaft that is connected through a gearbox to the generator. The gearbox converts the turning speed of the blades 15 to 20 rotations per minute for a large, one-megawatt turbine into the faster 1,800 revolutions per minute that the generator needs to generate electricity.
This chapter focuses on the construction of the generator and its major individual components. The stator winding information regarding winding phases, parallels, and connections can be explained using both developed view and circular view-type winding diagrams.
A wind turbine turns wind energy into electricity using the aerodynamic force from the rotor blades, which work like an airplane wing or helicopter rotor blade. When wind flows across the blade, the air pressure on one side of the blade decreases.
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