Friday, 16 December 2016

Understanding The Magnetic Torsion Accelerator

By Jeffrey Young


The relationship between angular acceleration and moment of inertia is very crucial when designing machine designs. The knowledge is even much important for the clients who may wish to retrofit their machines. To have a good estimate of the torques, you may have to use a specified magnetic torsion accelerator that uses a preset speed over a recognized period of time. To understand how the accelerator works, prerequisite knowledge in Physics is mandatory.

To evaluate the angular design of a machine, you will need to have the angular velocity of the same. Angular velocity, measured in radians per unit second, is the result of angular acceleration and moment of inertia. It is quite difficult to get an estimate of the moment of inertia in the real world. In such a case, some variables like inertia are not considered. Nonetheless, this method is of great use when establishing the basics for torque approximation and component sizing purpose.

External current is used to provide energy inputs that galvanize the magnetrons. For commercial purposes, an approximate of 60 megahertz wave guide is used. All the conductors are then safely grounded. The maximum voltage feeder is at forty kilovolts along the current probe and 250 inside the wave guide. It is mandatory to have these specifications when doing a commercial venture. For domestic affairs, the voltage and requirements will be lower.

The model works by ionizing the hydrogen gas inside the wave guide. In the ionization process, hydrogen gas is converted to charge hydrogen ions. The ions are then used in facilitation of energy and energy conduction. The three phase stators available, create the magnetic turfs that turn into two opposite directions. In the quarantine chamber, its torsion field and the magnetic field twist the flux path.

The baseball magnetic confinement coil induces current into the spherical conductive confinement chamber. The induced current produces the mirror field inside the confinement chamber thus compressing the torsion field. The inertial confinement beam pass through the three phase electric stimulation stators converging at the epicenter of the field. This adds aggregate energy to the various fusion reactions.

The energy generated from the entire torsion field is compressed with an aim of expanding it in the mirror field. The solidity of both fields is done to the inward. The interior compression of mutual fields boil the plasma completely to its fusion state. All the thrust diodes available accelerate directing its entire plasma outward. The specific induction stators continue with the exact storage of the required energy in the magnetic field.

The entire system works to convert the accelerated ions to a direct electric output then adding another to the thrust path. The energy produced is then converted via the means of heat energy in the nuclear science. The mentioned means include the smelted salt as the main heat exchange medium. The primary media then heats water that is later used in the steam turbines.

This innovation works on the base of having alternating current supplied to the pair of electric inductors that in turn create a field that rotates on time with the alternating current oscillations.




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