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Confirming the Delayed Lenz Effect

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  • qvision
    replied
    Yes, those transformer experiments are looking interesting.

    My new wire should arrive tomorrow or the day after so that i can confirm whether or not a higher impedance coil can support a wider range of loads and possibly bring the rotor speed up to a higher one than what is achieved with an open coil with core.

    With a coil like that, then each additional load that is added further increases rotational speed ...

    Leave a comment:


  • quantumuppercut
    replied
    Originally posted by qvision View Post
    @ QuantumUpperCut

    My cores get hot, this isn't ZPE or anything like it
    I do expect things to get hot, but if things are out of phase, it shouldn't be as much. I think our experiments are about 10-80 degrees out of phase. I see OUG and gotoluc are on similar path, but one is using high freq and one is using low freq tuning. I think both is trying to tune to draw reactive power. I also speculate the reason power go down in OUG demo is when load is apply, a counter flux minimize the core alignment reducing hysteresis losses. When the magnetic field collapse, Lenz continue to operate because of winding inductance. In a way, it's not Lenz is being delay, but rather Lenz can't reverse direction quick enough due to inductance.

    Leave a comment:


  • qvision
    replied
    @ OUG

    What wire diameters are your primary and secondary in the transformer videos ?

    Leave a comment:


  • qvision
    replied
    @ QuantumUpperCut

    My cores get hot, this isn't ZPE or anything like it

    Leave a comment:


  • Guest
    Guest replied
    Overunityguide,

    It seems the amount of power being collected by the load running at 950Hz is
    dependant on the physical properties of the secondary transformer coil.

    Indeed quite interesting... The other transformer you've demonstrated with
    the laminate core is much more versatile with the removable parts. Could a
    second hi-impedance coil be positioned on the other side of the primary
    with a resultant gain in output power? Then if true would there be a limit
    to the number of output coils?

    Would having a bifilar primary give the energy being used to power the load
    a recovery pathway by channeling it into a capacitor bank connected to the
    second primary coil? If the source is a 12V battery, when this recovery bank
    reaches a level of voltage suitable for charging, couldn't it somehow be
    immediately disconnected from the coil while also shorting across the battery
    with a resultant gain in efficiency?

    Leave a comment:


  • quantumuppercut
    replied
    Originally posted by Overunityguide View Post
    @geotron, no it won't work that way. I have used two light bulbs, but they burned less brighter in a pair. So I guess that it was drawing the same amount of power in that case...

    But in my opinion the most interesting aspect in this setup, is that we can run the load purely reactive.

    With Kind Regards, Overunityguide
    One thing I'm still speculating about drawing reactive power and the power given by delay Lenz and all. It could be cold current. Something end up like this.

    StifflerDr's Channel - YouTube

    Still thinking about the issue but if we can check the heating when drawing reactive power to normal DC loading for the same power.

    Leave a comment:


  • Overunityguide
    replied
    Originally posted by geotron View Post
    Overunityguide,

    A question in response to your demonstration on the
    delayed Lenz transformer... You've got a couple of watts
    going into the LED lightbulbs, while the system current
    drops by as much when the secondary coil is put on load
    at the 950Hz setting.

    How much is available?? Would ten times as many lightbulbs
    drop the input by the same amount as one or an order of magnitude
    greater reducing the idle power to Zero?
    @geotron, no it won't work that way. I have used two light bulbs, but they burned less brighter in a pair. So I guess that it was drawing the same amount of power in that case...

    But in my opinion the most interesting aspect in this setup, is that we can run the load purely reactive.

    With Kind Regards, Overunityguide

    Leave a comment:


  • Guest
    Guest replied
    Overunityguide,

    A question in response to your demonstration on the
    delayed Lenz transformer... You've got a couple of watts
    going into the LED lightbulbs, while the system current
    drops by as much when the secondary coil is put on load
    at the 950Hz setting.

    How much is available?? Would ten times as many lightbulbs
    drop the input by the same amount as one or an order of magnitude
    greater reducing the idle power to Zero?

    Leave a comment:


  • elias
    replied
    Originally posted by Allen Burgess View Post
    I believe it would be an "Alternator". Spin the Newman Magnet up, or better yet replace it with a powerfull diametric Neo. and some good bearings. You have to design a motor for it, but if the rotor magnet has two poles, the current will be full sine wave a.c. It can demonstrate the effect through a broad range of r.p.m.
    I hope so, you made me a next project.

    Leave a comment:


  • Allen Burgess
    replied
    I believe it would be an "Alternator". Spin the Newman Magnet up, or better yet replace it with a powerfull diametric Neo. and some good bearings. You have to design a motor for it, but if the rotor magnet has two poles, the current will be full sine wave a.c. It can demonstrate the effect through a broad range of r.p.m.
    Last edited by Allen Burgess; 10-03-2011, 10:02 PM.

    Leave a comment:


  • elias
    replied
    Originally posted by Allen Burgess View Post
    It might be a bit off to call it an aircore when there's a magnet filling most of the space. I think "Magnet Core" would be better. The surrouning output coil is wider then it is long, hence the pancake description. Thin wire!
    That is the description of the Newman Machine:
    The Newman's Energy Machine tested by JL Naudin

    Can you tell us what was your rpm? I am going to set my newman machine with its large coils up again. Its coils are about 7 Henrys, really thousands of thousands of turns, I need to grind some new magnets I have bought for it to fit it inside. As I tested the motor about 10 months ago, it was a really efficient motor, very close to 100% efficiencies, but I could not verify above 100%.

    Now you siggest me use it as a generator, that makes sense, but I didn't expect acceleration, let's see.

    Leave a comment:


  • Allen Burgess
    replied
    It might be a bit off to call it an aircore when there's a magnet filling most of the space. I think "Magnet Core" would be better. The surrouning output coil is wider then it is long, hence the pancake description. Thin wire!
    Last edited by Allen Burgess; 10-03-2011, 06:34 PM.

    Leave a comment:


  • elias
    replied
    Originally posted by Allen Burgess View Post
    @elias,
    The skin of the magnet spinner meets the edge of the pancake spool magnetic field.
    I get it, you mean spinning a magnet inside a high voltage air core? Almost like the Newman Machine?
    If you get acceleration by an air core THAT IS SOMETHING serious! I have my Newman motor disassembled. Can you tell us the speed of your magnet when the effect manifested? Also some info about your coil will be useful.

    BTW What do you mean by the pancake spool?
    Last edited by elias; 10-03-2011, 05:27 PM.

    Leave a comment:


  • Allen Burgess
    replied
    Halo Magnet coil.

    @elias,

    This is important! I'm glad we agree. The design is so simple, it's easy to describe. The magnet's spinning inside an output air core coil wired for hi voltage around it. The skin of the magnet spinner meets the edge of the pancake spool magnetic field. I believe this design doubles the "Lenz Delay Propusion" effect. Naturally, you have to power the spinner from a different generator. I'm trying to run a sphere up inside the air core of a half pound of 30 AWG. The other factor is the inclusion of a load. The wire goes unoticed by the spinner if left open. The acceleration only takes place while under load.

    The design looks like an Omega! The spinner axel bridging the circle of thin wire wraps, to compare the shorted to the open rotor speed above threshold frequency.

    @overunityguide,

    Thane apparently believes the (MOT) may be overunity. Any plans to try and self loop and power itself?
    Last edited by Allen Burgess; 10-03-2011, 04:29 PM.

    Leave a comment:


  • elias
    replied
    Originally posted by Allen Burgess View Post
    I ran the plumber spool magnet spinner over a red Radio Shack coil wire to a rectifier, and lit an LED got 7.58 volts and 1.75 amps D.C. coming out of that jasper. The power source was a 12 volt RS alarm battery at 12.25 volts. This is while speeding up! I believe the effect is doubled when the magnet poles have two coil ends to work from the "Lenz Delay" shift.

    This discovery led to my other nested coil core designs.l

    I dug up a picture of it. It's the blue plastic spool and magnet visable lower right. click on and magnify the picture. The spool has a hi inductance wrap and exhibits 2X"s the "Lenz Delay Propulsion". Attach the 7 volt LED thru a FWBR, and watch the spinner accelerate! This is a new generation in alternator design, that integrates LDP, "Lenz Delay Propulsion" and nested rotor.
    I didn't quite understand what you did, can you explain further. This might be important.

    Leave a comment:

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