About How to turn on and off the wind resistance of the generator
The amount of force needed to turn a windmill generator depends on several factors such as the size and design of the windmill, the wind speed, and the load on the generator. Generally, a windmill needs a minimum wind speed of 5-6 miles per hour to start turning and a force of at least 8-10 miles per hour to generate electricity.
The amount of force needed to turn a windmill generator depends on several factors such as the size and design of the windmill, the wind speed, and the load on the generator. Generally, a windmill needs a minimum wind speed of 5-6 miles per hour to start turning and a force of at least 8-10 miles per hour to generate electricity.
The controller allows the machine to start at wind speeds of about 7–11 miles per hour (mph) and shuts off the machine when wind speeds exceed 55–65 mph. The controller turns off the turbine at higher wind speeds to avoid damage to different parts of the turbine.
The goal of this experiment is to determine the maximum output power of your wind turbine generator. To do so, you must search for the best loading condition by varying the resistance on the circuit. For a wind turbine generator, the best loading condition varies with wind speed (we do not explore this relationship in this lab).
Now, it is time to look at the issues associated with installing the wind system: Siting -- or finding the best location -- for your system. Estimating the system’s annual energy output and choosing the correct size turbine and tower. Deciding whether to connect the system to the electric grid or not.
In many cases there is gearbox between the blades and the generator to increase the RPM at the driveshaft. In this experiment, you will measure the power output of a wind turbine under load and determine the relationship between optimal resistance and internal resistance. You will use a KidWind MINI turbine and a fan.
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