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Serious HES derivative project proposal

Started by Cadman, February 11, 2023, 04:42:40 PM

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0 Members and 4 Guests are viewing this topic.

kolbacict

There is no EMF again in my white wire. Why?
There is a rotating magnetic field, but there is no EMF from it.
Where is the EMF promised by Dr. Holcomb ?! >:(
Only 1 volt on 40 turns.

pix

Because your white wire has to be wound over the inner tube, from side to side.
Not over tube wall.
The way you did it- cancelling EMF will be induced in the loop in both sides of the tube wall.


PS.
No ferromagnetic inside the tube. Air gap is huge. Expect large current in the drive windings to create B field.


Cheers,
Pix

bistander

Quote from: kolbacict on May 22, 2023, 05:59:26 AM
There is no EMF again in my white wire. Why?
There is a rotating magnetic field, but there is no EMF from it.
Where is the EMF promised by Dr. Holcomb ?! >:(
Only 1 volt on 40 turns.
Hi kolbacict,
I don't believe Holcomb.
The single phase induction motor rotor when in motion in the pulsating flux from a singly excited stator field does create a RMF, but you'll never see the RMF without the rotor in motion. Point is that when you take various parts from different equipments, you should not necessarily expect to see what you think was there in the original entirety. It may be fun and learning experiments, but to search for Holcomb effect in a moving magnetic field, it would be more fruitful to start with a known moving magnetic field such as the RMF from a 3-phase stator or sequence pulsed coils. Just my opinion.
And to Mr. Rakarskiy, have you had any success in finding this "Holcomb induction" in any physical experiment? Please share.
bi

kolbacict

Hi everyone.
I think my experiment was more like this.

Quote from: rakarskiy on May 22, 2023, 05:55:26 AM
Want to check if the pump will work?  ;)
https://www.youtube.com/watch?v=vZX0m6BV_v0&t=1s
I think this is брехня. :) IMHO

pix

Nope.
That's why your EMF isvery low.
And because there is no ferromagnetic inside tube, don't expect efficiency out of it.