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Overunity Machines Forum



A-King 21 - build discussion /investigation

Started by ramset, July 15, 2019, 09:13:34 PM

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forest

https://www.youtube.com/watch?v=XkAMNFKjds4&t=438s
but it's not an only way imho. The EM field is the REAL source of energy conservative ; the stream of energy go out from somewhere (ether or pure vacuum or whatever) and goes back and can DO work on electrons, but this work is free energy only in special cases - when the flow is steady, free and undisturbed.
If you create or must recreate this flow (at any rate) you must do work and spend energy, the same if you disturb it or have to recreate the dipole. Don't kill the dipole and the nature is providing the mirror energy.In case of the video above , once you do it electronically you will end up with capacitor charged at fast rate with very small energy expended to do it and can discharge it at slow rate. The only problem is in elements : it won't work with the simple electronic parts  . For example common capacitor does not have 3 terminals : the additional used for electrostatic induction effect. There is no simple spark gap controlled by gate working in open circuit though maybe mosfet could be used

TinselKoala

"How do you measure power?"
" The usual ways. But..." (insert paragraphs of autogenerated irrelevant text here) "and if your meters don't show OU you are not using them right."
"OK... but how do _you_ measure power?
" I already told you!" (insert more paragraphs of text)

This kind of "answer" is somehow unsatisfactory, although as a general obfuscatory strategy it is quite effective.


So let's be more specific. A fan blade is turned and moves air. How is the power dissipation of that fan blade measured? That is, just exactly how much power does it take to turn that blade at a specific RPM, how much air (in Cubic Feet per Minute, CFM) does it move, what's the pressure differential across the fan,  can one draw a graph of power dissipated versus CFM at various RPM, etc? In other words, is the fan blade calibrated?

I'm not talking about electrical power input to some motor that is turning the fan blade, although that is important, because the fan isn't 100 percent efficient, is it? Or is it? How can we even know the fan's overall efficiency at all if we do not actually know the _mechanical_ efficiency of the fan blade itself?


What is its power curve? For example a plot of Mechanical power at the blade shaft versus CFM at various RPM.  How is this measured? Can we see a raw power plot for a particular fan that might be used in, say, a demonstration of OU?  Is this data and information even known or considered by the demonstrator?


https://www.engineeringtoolbox.com/docs/documents/197/VentilationFanPowerConsumption.gif


a.king21

Benitez:  I'll try explain it this way. You give one pulse of one joule  to a capacitor plate A, The other plate  B charges up from the environment.
Before the second pulse you route the second plate B  via a series of diodes and coils back onto the first plate A.
The first plate now has one joule on it.
You pulse plate A again from your device and now Plate A has 2 joules on it and Plate B receives 2 joules from the environment.  Before you know it you have 1000 joules on plate A and plate B receives 1000 joues from the environment.  All minus system losses of course, and the energy is limited t0 the size of the capacitor.
This is the simple way to explain the concept. You don't need meters on this because the gain is self evident.
Now the way Benitez does it is he intercepts the inrush of charge to plate B with a system of coils and possibly interrupters and diodes. He fires the energy into the source to increase the source output.  Hope this makes sense. I have replicated the effect and had the Slayer self powered until night time. Let's have some help here guys. And try it and post your results.

AlienGrey

Quote from: a.king21 on July 18, 2019, 10:31:29 AM
Benitez:  I'll try explain it this way. You give one pulse of one joule  to a capacitor plate A, The other plate  B charges up from the environment.
Before the second pulse you route the second plate B  via a series of diodes and coils back onto the first plate A.
The first plate now has one joule on it.
You pulse plate A again from your device and now Plate A has 2 joules on it and Plate B receives 2 joules from the environment.  Before you know it you have 1000 joules on plate A and plate B receives 1000 joues from the environment.  All minus system losses of course, and the energy is limited t0 the size of the capacitor.
This is the simple way to explain the concept. You don't need meters on this because the gain is self evident.
Now the way Benitez does it is he intercepts the inrush of charge to plate B with a system of coils and possibly interrupters and diodes. He fires the energy into the source to increase the source output.  Hope this makes sense. I have replicated the effect and had the Slayer self powered until night time. Let's have some help here guys. And try it and post your results.
yes that was in book 5 final secrets Tom Bearden  complete with a circuit.  http://www.cheniere.org/techpapers/Final%20Secret%20of%2015%20Feb%201994/index.html