Originally posted by Jetijs
View Post
however it is interesting to know about the exhaust temperature increase with the plasma spark. This is an indication there is some extra energy and this is where the water injection could capitalize on this extra heat to increase mechanical power. The water injection may need to be timed though.Excellent information I think.
Thanks for sharing.
Luc

I used an induction digital amp meter clamped over various feed wires while operating. It showed less than 2 amps being drawn from battery at any rpm. The readings on the feed wires from the inverter (after isolation transformer) to the tripler circuit were only .56 amps for either wire. Output after the tripler circuit only showed a .22 amp draw. I am having a hard time understanding why the inverter can't handle this small of a load! It is a 1000 watt inverter for pete's sake! I'm almost ready to try to tap the alternator for my high voltage. If I can't get reliable operation from this circuit using an inverter, it's time to FIND a source that will be reliable. The mentioned amp draw readings were taken while rotating distributor at 4,300 rpm, but the inverter only hangs on without "crying" at 2,200 rpm for a few minutes longer than the higher rpm. Anyone know the correct way to utilize the alternator tap before the regulator to set this up with that high voltage? Any help would be appreciated, I'm about to kick this inverter across the parking lot.
, but before trying it with hydroxy just want to make sure.
Leave a comment: