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Overunity Machines Forum



Partnered Output Coils - Free Energy

Started by EMJunkie, January 16, 2015, 12:08:38 AM

Previous topic - Next topic

0 Members and 222 Guests are viewing this topic.

leonelogb

AND THE WINNER IS Chris Sykes - hyiq.org

https://arxiv.org/abs/1802.00832v1

https://www.uibk.ac.at/newsroom/first-diode-for-magnetic-fields.html.en

    Lorentz reciprocity establishes a stringent relation between electromagnetic fields and their sources. For static magnetic fields a relation between magnetic sources and fields can be drawn in analogy to the Green's reciprocity principle for electrostatics. Here we theoretically and experimentally show that a linear and isotropic electrically conductive material moving with constant velocity is able to circumvent the magnetic reciprocity principle and generate infinite magnetic isolation. This result is demonstrated by measuring an extremely asymmetric magnetic coupling between two coils that are located near a moving conductor. The possibility to generate controlled unidirectional magnetic couplings breaks down one of the most deeply-established relations in classical electromagnetism, namely that mutual inductances are symmetric. This result might provide novel possibilities for applications and technologies based on magnetically coupled elements.


Mr.Miyagi

Quote from: leonelogb on November 26, 2018, 01:52:10 PM
AND THE WINNER IS Chris Sykes - hyiq.org

https://arxiv.org/abs/1802.00832v1

https://www.uibk.ac.at/newsroom/first-diode-for-magnetic-fields.html.en

    Lorentz reciprocity establishes a stringent relation between electromagnetic fields and their sources. For static magnetic fields a relation between magnetic sources and fields can be drawn in analogy to the Green's reciprocity principle for electrostatics. Here we theoretically and experimentally show that a linear and isotropic electrically conductive material moving with constant velocity is able to circumvent the magnetic reciprocity principle and generate infinite magnetic isolation. This result is demonstrated by measuring an extremely asymmetric magnetic coupling between two coils that are located near a moving conductor. The possibility to generate controlled unidirectional magnetic couplings breaks down one of the most deeply-established relations in classical electromagnetism, namely that mutual inductances are symmetric. This result might provide novel possibilities for applications and technologies based on magnetically coupled elements.


Chris said: http://www.aboveunity.com

https://overunity.com/15395/partnered-output-coils-free-energy/msg495455/#msg495455

https://overunity.com/15395/partnered-output-coils-free-energy/msg500497/#msg500497

F6FLT

Here is the principle: a coil induces currents in a thick moving conductor. These eddy currents produce a magnetic field that opposes the field of the first coil and also induces a current in a second coil on the other side of the conductor.

There is therefore a coupling of the two coils via the moving conductor. But the eddy currents move with the conductor, so that there is a phase shift between the influence of the first coil on the second, and the opposite effect via the Lenz's law of the second on the first.

The conductor acts as a mediator between the two coils so that the effect of one on the other is not symmetrical but delayed. The mutual induction coefficient is therefore different from L1 to L2 than from L2 to L1, which is a major innovation that could open the door to new applications. Note, however, that there is a perfect conservation of energy in the transfer (and losses in the resistance of the moving conductor).

There is absolutely nothing new concerning the electromagnetism theory which perfectly models this situation.


F6FLT

[sorry, posts error and impossible to delete]