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Overunity Machines Forum



Holcomb Energy Systems:Breakthrough technology to the world

Started by ramset, March 14, 2022, 11:07:24 AM

Previous topic - Next topic

0 Members and 36 Guests are viewing this topic.

kolbacict

Quote from: kolbacict on March 13, 2023, 05:46:34 AM

Most importantly, I seem to have found that only a virtual rotating field can be induced in the ring around the stator. And nothing but that. All other ring will be ignored.

After careful thought, I came to the conclusion that I may have been wrong about this. :(
To neutralize the direct transformer effect of the primary and secondary windings, they must be arranged other. And, perhaps one winding is not enough. we need several. I will think about it.
For now, another experiment.  Secondary 22 turns. The voltage on the secondary winding has already risen to half a volt peak-peak.


kolbacict

Quote from: Dog-One on March 13, 2023, 04:35:11 AM
Is your outrunner core wound like this one?

What RPM is the field spinning at?

Actually a little surprised you got much voltage to measure at all.
More turns of enamel wire certainly would boost the voltage some.
If you can get at least a couple of volts out of it, checking the
amperage would be useful information.
Could you showed circuit like that having an even number of poles.
For instance twelve.
I think how to place windings along the perimeter of the ring, to the total induced in they induction from the stator is zero.
By the way, there were projects here, someone laid out with windings around the perimeter of the ring. Too bad I didn't really get into it then.

Dog-One

Quote from: kolbacict on March 15, 2023, 12:45:20 AM
Could you showed circuit like that having an even number of poles.
For instance twelve.

With three-phase input, you need a number divisible by 3.  So yes,
12 would work, so would 15, 18, 21 and so on.

Quote from: kolbacict on March 15, 2023, 12:45:20 AM
I think how to place windings along the perimeter of the ring, to the total induced in they induction from the stator is zero.

I think a partial secret to Holcomb is different from what you are
doing.  You do not want to have your output coils interfere with
the flux path produced by the exciter coils, otherwise you have
a simple transformer.  Instead, your output coils need only be
near the flux path; they capture energy from the transitions
when the exciter coils switch to the new position.  They only
need to be exposed to the change in flux.  When you do it this
way, the Lenz reaction from a load on your output coils cannot
interfere with what the exciter coils are doing.

SolarLab


Probably - TIME FOR A LITTLE REVIEW of some fundamentals

The first 20 minutes or so are mandatory, the rest is still quite interesting.

"The Amazing World of Electromagnetics (revised)" 

https://www.youtube.com/watch?v=OrTriTMZEnk

Professor Raymon C. Rumpf
I was challenged with introducing all of electromagnetics in one hour to students just out of high school and entering college.
This video is my attempt at this.  Electromagnetics is a very mathematically intense discipline involving vector calculus, differential
equations and other things that make this challenging.  Here I have tried to explain everything visually with no math.  I do present
some equations, but only to satisfy students curiosity about what the equations may look like.  I hope you enjoy the video and get
something out of it.  I also hope it helps recruit more students into the area of electromagnetics and optics.  The video was fun to
create!

Worth the watch - especially the first 20 minutes!

SL


kolbacict

If there is something that rotate around stator which is having three phase current.
That something is rotating in air around stator poles. It is virtual rotating magnetic field.
Therefore, if you put an iron bandage on the stator, will this field move even more comfortably?