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Minimal Lenz Generator V2

Started by BorisKrabow, July 04, 2020, 03:13:24 PM

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BorisKrabow

Hi All !  I want to share a new idea . It is an efficient electric generator .Everything is very simple  :) .There is a coil and a magnet .The magnet goes away and the coil produces an electric current.At this time, the coil prevents the magnet from moving with its field .Now we get rid of the braking of the generator shaft . Two iron washers are attracted by the coil and accelerate the rotor .The same Lenz force is used that prevents the magnet from moving.
      Thus, in this generator the braking forces are compensated by the acceleration forces .This design has a number of specific features that should be considered for success.  This will be discussed later .


BorisKrabow

The duty cycle of the generator begins when the magnet is opposite the coil  ( on the picture MLG_V2.jpg  ) .
          At this moment the load is connected .
    The duty cycle of the generator ends  when the iron washers are opposite the coil . At this point, the load is disconnected until the start of the next cycle.

BorisKrabow

The easiest way to extract a duty cycle is to use a diode . The diode must be installed so as to pass the current of the desired polarity . The reason for these complications is that a magnet approaching the coil and moving away from it produces a voltage of different polarity . 
              (Attention ! The captions in the picture are randomly placed.)

Magluvin

Quote from: BorisKrabow on July 05, 2020, 02:16:41 PM
The easiest way to extract a duty cycle is to use a diode . The diode must be installed so as to pass the current of the desired polarity . The reason for these complications is that a magnet approaching the coil and moving away from it produces a voltage of different polarity . 
              (Attention ! The captions in the picture are randomly placed.)
When a rotor magnet passes a coil, on the approach the magnet field cuts the windings on that side of the coil causing current to flow in the whole coil in 1 polarity, and when the magnet is just passing the departing side of the coil, current in the coil occurs in the opposite polarity.  Diodes or not, there will be lenz occurring on both affected areas of the coil. On approach there will be repulsion to the incoming magnet and repulsion passing dead center cutting the departing windings. When the magnet is crossing dead center, both the approaching side of the coil and the departing side are being influenced by the rotor magnet equally where no current flows in the coil as a whole. That is how the AC waveform happens when the magnet passes the coil.

Mags