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Hi Sven,
"...but if Ivor Catt was right it would not matter how thick the cable would be to carry a lot of energy when the energy moves around him instead of moving through the electrical conductor as the electron moves or bumps."
If the wires have resistance they will dissipate the energy. For good reflectors of the fields super conductors would have to be used. Catt treats conductors like having an infinitely high dielectric constant. This means the voltage across a conductor is very small compared to the voltage across a dielectric (insulator). Without conductive guidance the waves spread out like from antennas.
For high power transmission the product of current and voltage has to be high. This puts demands on how the transmission line is made. For low current the dielectric insulation must be able to withstand a high tension. For low tension the wires must withstand a high current. Thus a compromise has to be made. Just look at how high power transmission lines of the grid are made.
There is a web page somewhere showing how to send power through one wire with a reflector at each end. The reflectors are just copper cones with their open ends pointing towards each other. The waves then follow the wire without radiating away. Perhaps the ground helped guide the signal. I don't remember if the ground was used.
Don't send too high HF current through the ground as the ground may be sterilized.
"Sometimes I think I pump with the diode plug too much energy in the transformer to saturate him, I do not know exactly how I can check this over a peak."
That's determined by the current around the core leg. The resonant current has to be enough to saturate the core. The primary and secondary currents cancel each other during load. By the currents I mean the A x turn current which is the total current going around a core leg.
Regards
Ole
---In [email protected], <s.friedrich@...> wrote :
Hi Ole, but if Ivor Catt was right it would not matter how thick the cable would be to carry a lot of energy when the energy moves around him instead of moving through the electrical conductor as the electron moves or bumps. Well maybe I would have to read it again.
The high voltage acts like a vacuum cleaner for energy or a magnet. The testatika also worked with high voltage.
I'm still considering whether to tackle the Genesis project again, it's easy to set up, the only question is how many turns you need at least, you could take twin strands bifilar to wrap a train, just a thought ,
I also thought about connecting the earth to the resonant circuit of the transverter via a diode, but without sufficient voltage this will probably not work.
Sometimes I think I pump with the diode plug too much energy in the transformer to saturate him, I do not know exactly how I can check this over a peak.
regards
Sven