3 phase free energy
Timtron
https://www.youtube.com/live/k5yFTSklluk
I just watched this live stream video it is GREAT
I.came in the middle of it i left lots of comments...
3ph transformer, A phase the AC input from grid.
B phase doing "nothing" but is resonated woth 92uf AC cap.
C phase the output to.load of heater coils (480 degrees F) (249 degrees Celcius)
and that C output phase resonated with 20.75 uf cap....
It's a;
865 VA transformer
Schindler Elevator Corporation
Model# 22981
Hector! No shunt bars no hemorrhoids just a stock offcsgeld 3ph AC transformer
he got from salvage yard
It's the "Transvertor" you have been preaching about for 30 years...
Everyone watch this!
The link again:
https://www.youtube.com/live/k5yFTSklluk
Kone
Hi Simon,
Timtron connects the heater coils after 10 minutes of the video.
He claims that with 5 watts of input power he measures 1500 watts of output power.
Can 5 watts really heat the heater coils to +249C?
It seems that he measures the output power with a volt and amp meter and not with
a wattmeter.
Is he measuring 1500 volt-amperes of reactive power?
That would explain why he gets 1500 volt-amperes out by using a three-phase
transformer that is only rated at 865 VA and also only 1 of the 3 phases is used as
output.
How does the B-phase work? Is it counted as a parallel or series
resonance?
The C-phase is a series resonance and it is connected to a
C-capacitor with 1/3 the value of the B-capacitor.
A series resonance has
minimum reactance at the resonance frequency and greater reactance at lower and
higher frequencies and then the volts and amps are also out of phase.
Best Wishes, Hermes
P.S Hector Perez Torres claim that instead of a 3-phase
transformer a 1-phase transformer with 3 secondary coils can be used.
Hi Hermes,
When you test it, you'll soon find out whether or not it
actually does work. I've got too much to do right now to spend a while analysing
it and telling you where the energy is going and where the measurement errors are.
You should be able to do that yourself.
In general, though, any LC
resonator will have a lot more AC voltage and current measured across it and
through it than you supply. It's pretty-well the definition of a resonator. The
energy bouncing around within it is Q times the energy lost in various ways.
Basically the voltage and current increase until the losses equal the power
you're feeding in minus the power you're actually extracting right now.
You can see this if you want as energy being stored in the resonance. Thus you
can actually get that energy out again instantaneously and at high actual power,
but once you've taken the energy of resonance out it of course stops resonating
until you stop taking all the energy out and let it resonate again.
Same
thing really as spinning a flywheel. You can put in a low power for a longer
period to spin it up, then take that energy out again (minus some losses) at a
much higher power, but then the flywheel stops and you don't get more energy out.
So: I keep telling you to look for a symmetries being broken. This system
doesn't break any symmetries at all, so the energy you can get out of it is
limited by what you put in, and of course you lose a bit.
Best regards,
Simon
I have tested Hector Perez Torres 1-phase transformer with 3 coils.
| 3 coil transformer |
Inductance |
Capacitance |
Voltage |
Current |
Watt |
| Input Coil |
288mH |
2nF2 |
15 Volt |
4 milliAmpere |
60 milliWatt |
| Parallel Output Coil |
140mH5 |
4nF7 |
10 Volt |
1 milliAmpere |
10 milliWatt |
| Serial Output Coil |
9mH8 |
68nF |
3 Volt |
7milliAmpere |
21 milliWatt |
The frequency from the generator was 6kHz2 and I did replace the 68nF
capacitor with 22nF capacitor but then the serial output current decreased at 6kHz2.
Conclusion: The 3-coil transformer with capacitors did not give free energy.
Its effectivity was 50%.
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