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Overunity Machines Forum



The book is dedicated to self-propelled mechanical generating devices.

Started by rakarskiy, November 02, 2018, 11:56:37 AM

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rakarskiy

Quote from: Floor on November 29, 2021, 07:58:16 AM
@ rakarskiy

Build and test your principle in a simple experiment.


floor

What's the point of building it when I found a bug.

In the calculations of the magnetic induction of the wire, I set the distance from the wire to the pole equal to 1 mm (the gap distance between the wire and the pole). With the help of my friend, this error was proved experimentally. This distance should be taken into account in an ideal state according to the formula:(r = μ₀*(2π*Bm / I) ), where Bm is the magnetic induction of the external field. this distance will indicate where the inductions of the external field and the conductor are equal.
The algorithm for calculating the generator and the circuit with the generator is absolutely correct.

Your friend is just a little crazy. I don't take anyone's word for it, just calculation. And our friend is very slow to think. If you want to have a dialogue with me, you need to process information faster.

If initially the constant that in an ideal engine and generator their power - electrical and mechanical, are equal, was questioned. The possibility of creating a simple generator with a СОР>1 was considered.
Now, if we calculate the power of the maximum EMF point and the torque, the mechanical power is always twice as much as the electrical one. And here's another catch, due to the reversibility of machines, the possibility of creating an electric motor with a conversion efficiency greater than 1, which cannot be.

They have already tried to prove to me that it is necessary to take into account the voltage drop in the generator circuit, I do not agree with this, since the moment is calculated from the current strength. No one has solved this problem yet. The constant is not executed.

Floor

Quote from: rakarskiy on November 29, 2021, 08:29:54 AM
What's the point of building it when I found a bug.

No point... since you found a bug... unless more / other insights comes from a build.

best wishes
         floor

lota


Hello
now you have calculated so much. Whether everything is right or not? But how should the generator for TOYIR Kamolov bike be? It is four poles. The diameter approx. 160mm the width approx. 80mm. With neodymium magnets. Wire approx. 0.5mm. Can you do the math?? I built the engine with flywheel but the generator is the problem.
Greeting
Lota

rakarskiy

Quote from: lota on November 30, 2021, 01:54:15 AM
Hello
now you have calculated so much. Whether everything is right or not? But how should the generator for TOYIR Kamolov bike be? It is four poles. The diameter approx. 160mm the width approx. 80mm. With neodymium magnets. Wire approx. 0.5mm. Can you do the math?? I built the engine with flywheel but the generator is the problem.
Greeting
Lota

If such as that of TOYIR (Uzbekistan), the generator should be controlled by the power of the phase (the simplest power regulator). At the output of the generator phase, put a bridge and a regulator with a thyristor in front of it, find the position when the flywheel and the motor are working, and the generator does not slow it down more than necessary. This is the only correct solution for a traditional generator with an inertial drive. So it was decided in all successful projects, including the American "Earth Engine"https://rakarskiy.livejournal.com/12789.html .

Each phase has its own power regulator

lota


Hello
OK I'll try. But in the video he only has a power regulator and a BLCD driver. One interrupter and two relays and throttle. I don't know what the transformer is for yet.
Greeting
Lota
https://www.youtube.com/watch?v=2_nj9m2UEBs&t=0s