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There we describe process of development of plasmatic implosionreactor PIR 1
I study options to excite the coil for the correct pulsing magnetic field.
The objective is generation of magnetic signal similar to heart beat in coil to make possible tunning with the heart beat of „reactor operator“ i.e. with man operating the reactor.
The coil is so far toroidal coil with bifilar windings as mentioned before:
To make magnetic field strong enough I need sufficient current, but insufficient to burn the coil. We use pulses, so the current will not be at full strength all the time. Therefore the windings is able to carry higher current then maximal direct current of the wire without melting the wire. Ideally I would have a superconductor, but let's leave it for the future
So far current of several A will be enough. For that I need modulated current source (with low output impedance).
This coil has approximately 2 x 30 thread spools with average radius of 17 cm and height of 4 cm. Very imprecise estimate of its induktace L would be around 1H for relative permeability 100, which will maybe have the core of the coil made by reactor's sphere with iron nanoparticles. Wire's cross-section is 0,75mm2 so maximal current load about 13A.
Heart beat is well described by records of the pressure in the heart chamber:
Basicaly it is almost sinusoidal (cosine) wave with one positive polarity and missed negative polarity. Fraquency of a calm man is around 1,2 Hz.
Impedance of this coil Rl, with the above mentioned frequency, will be, if we neglect resistance of copper wire, around 2 x 2Ohm, if we consider half frequency because we have half sinusiodal signal. It is comparable with todays reproductors.
Current 10A with above impedance will give us needed voltage 2 x 20V. It gives power 2 x 200W. These are only estimations and reality remains to be seen.
To genarate such signal we have several options:
Pro vířivý pohon tekutiny v komoře reaktoru je několik možností:
A z nich mi nejlépe vychází magnetická tekutina v komoře poháněná vnějším točivým polem z věncové cívky buzené pulzním napětím vhodného průběhu.
Návrh reaktoru počítá s vysokorychlostním motorem s rotorem uvnitř komory pro vířivý pohon tekutiny.