Electricity generated using an armature

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In summary, the conversation discusses the possibility of using an equation to calculate the energy generated from spinning an armature and the inputs needed for the equation. It also mentions the factors that determine the generation of electricity and the difficulty of plugging them into a simple equation. The conversation also mentions the need to maintain a certain voltage in order to charge a battery and the suggestion to build a test rig instead of relying on calculations.
  • #1
stu1984
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Is there an easy equation to calculate the energy generated from spinning an armature. I was wondering if there was such an equation where I could enter the following inputs:
• number of rotations on the shaft
• the number & size of the magnets being used
• the length and thickness of the wire surrounding
…to get an output of the energy generated.

Ultimately I want to understand if it is possible to re-charge a battery (battery to be decided on) with electricity generated from this process.

Or if there are any useful websites or books anyone knows of

All information will come gratefully, I thank you in advance.

Regards

Stu
 
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  • #2
You will have a few factors that determine the generation of electricity, starting with:

Strength of magnets
Distance from magnets to coils
Number of windings in coils
RPM
Wire gauge in coils

The first two are quite important and going to be difficult to plug into a simple equation. The strength is going to fall off on an exponential curve based on distance.

In order to charge a battery, you need to maintain a voltage higher than the no-load float voltage. As you increase this voltage more then more current will flow into the battery and charge it faster while also heating it (via the internal ESR). But this is similar to the discharge curve where its not a linear relationship.

It would seem to be far easier to build a test rig then to try to calculate and end up off an order of magnitude from a poor assumption.
 
  • #3
Thank you,

i am currently trying to asemble the components for a test. this will bring the result hopefully required to charge a battery
 

1. What is an armature?

An armature is a component of an electric generator that consists of a coil of wire wrapped around an iron core. It is responsible for converting mechanical energy into electrical energy.

2. How does an armature generate electricity?

When the armature rotates within a magnetic field, it induces a voltage in the coil of wire. This voltage creates an electric current that can be used as a source of electricity.

3. What is the role of a commutator in an armature?

The commutator is a mechanical switch that ensures the flow of current in the armature is always in the same direction. Without a commutator, the current would constantly reverse, resulting in an inconsistent flow of electricity.

4. How efficient is electricity generation using an armature?

The efficiency of an armature depends on a variety of factors, such as the design of the generator, the strength of the magnetic field, and the speed of rotation. However, modern generators can have an efficiency of up to 98%, making them a highly efficient method of electricity generation.

5. What are the advantages of using an armature for electricity generation?

One of the main advantages of using an armature is its ability to convert mechanical energy into electricity. This allows for the production of electricity in areas where other sources may not be available. Additionally, armature generators can be small and portable, making them useful for a variety of applications.

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