The method of formation of an additional quantity of free electric charges and their directional move in the media

 

(57) Abstract:

The invention relates to the field of electrical engineering and can be used to develop new power sources, to substantially increase the conductivity of the materials, as well as to charge the capacitors and batteries. Media free electric charges with conductors placed in the streams of particles fields of the space environment in the immediate vicinity of the screen so that at least one vertical particle flux field of the space environment, oriented to the center of gravity of the screen is held simultaneously at least one surface of at least one conductor and at least as small as desired, the surface of the carrier. The conductors carry out mobile. The technical result is the ability to vary the number of free electric charges and characteristics of the resulting electric current in a wide range. 5 C.p. f-crystals, 6 ill.

The invention relates to the field of electrical engineering and can be used to develop new power sources, to substantially increase the conductivity of the materials, as well as to charge the capacitors and batteries.

The ability of conductors (Gscat through an electric current due to the presence of free electric charges (electrons, ions or other particles).

In practice up to the present time there are several ways to increase the number of free electric charges in the media: chemical, thermal, photonic, radioisotope.

Widely known methods and directional movement of free electric charges in the media with traditional types of fields: electric, magnetic, electromagnetic (see "Great Soviet encyclopedia" publishing house "Soviet encyclopedia", Moscow, 1978, T. 10, pp. 580-581).

In the present invention to increase the number of free electric charges and their directional move in the media are invited to use threads particle field space environment.

A known method of forming an additional quantity of free electric charges and their directional move in the media (patent RU 2141163), which consists in the fact that the medium is free of electric charges with conductors placed in the streams of particles fields of the space environment in the immediate vicinity of the screen (of the Earth or other celestial body) so that at least one vertical particle flux field of the space environment, the greater least one conductor and at least as small as desired, the surface of the carrier free of electric charges.

The disadvantage of this method is that its implementation does not fully use the capabilities field of the space environment. In particular, it is not possible to adjust the amount of free electric charges in the media.

The present invention is the task of developing a method of forming an additional quantity of free electric charges and their directional move in the media, which is due to changes in the medium of the conductors relative to each other allows you to adjust the number of free electric charges in the media.

The problem is solved in that in the method of formation of an additional quantity of free electric charges and their directional move in the media, which consists in the fact that the medium is free of electric charges with conductors placed in the streams of particles fields of the space environment in the immediate vicinity of the screen so that at least one vertical particle flux field of the space environment, oriented to the center of gravity of the screen is held simultaneously at least one surface of at least one conductor and at least through an arbitrarily mA is low.

The conductors can be moved in the longitudinal or transverse direction, at least one conductor can be rotated about the longitudinal or transverse axis or outside its axis, and the conductor can be fixed in one of the positions at an angle to the said axis, followed by its movement in the longitudinal or transverse direction. In addition, the conductors can be connected to each other.

Execution of conductors moving, doing different kinds of motion allows you to increase or decrease the number of free electric charges in the media.

Further, the invention is illustrated with specific examples of its implementation and the accompanying drawings, on which:

Fig. 1 depicts a media guides and the forces acting on it;

Fig. 2 - carrier with conductors installed with the possibility of reciprocating motion;

Fig. 3 - media guides mounted for rotation about the longitudinal or transverse axis;

Fig. 4 - the media, one of the conductors of which rotates relative to the outside of its axis;

Fig. 5 - the media guides fixed on the;

Fig. 6 - media with conductors connected additional conductor.

The proposed method for the formation of additional quantities of free electric charges and their directional move in the media is as follows.

The essence of the method lies in the fact that the medium 1 (Fig. 1) the free electric charges with conductors 2 and 3, for example, in the form of plates are placed in the zone of naturally shaped particle flux field of the space environment. Formed to be regarded as a stream of particles, which is different from the surrounding field of the space environment on at least one of its parameters (intensity, direction, and so on). As streams of particles fields of the space environment is not the same in all directions A, B, C, D, we can assume that the field of the space environment in the direction of flow'AN particles is naturally formed, in contrast to particle flows in other directions, for example, out of range of the screen 4.

Shaped field of the space environment will not only directly from the surface of the screen 4, but at some distance from him. Geometrical dimensions of shaped fields depend on the weight of the shield 4 and size. Acreature perspective relative to the flow of particles in the Universe suggest, the uxes of particles, fields of the space environment are not only the centre of mass of the celestial body (vertically), but also in other areas. The particle flux field of the space environment, which moves from outer space to the center of the celestial body is vertical. Streams of charged particles moving in other directions, are side.

Thus, the carrier 1 and the two wires 2 and 3 are exposed to vertical particle flux field of the space environment, which is simultaneously on at least one surface of at least one of the conductor 2 or 3 and at least as small as desired, the surface of the carrier 1. The carrier 1 can be placed not two, but more conductors.

If the conductors 2, 3 to connect the measuring instrument, it will record the appearance in the circuit of the electric current, and maximum current and voltage shall be at such place the carrier 1, when the plate conductors 2 and 3 are horizontal, i.e. perpendicular to the vertical particle flux field of the space environment. If the carrier 1 is mounted so that the plate conductors 2 and 3 are parallel to the vertical particle flux field of the space environment, the voltage and the power is e charges in the carrier 1 at the same time a double effect.

First, it moves the free electric charges from one side of the carrier 1 into the other, providing an uneven concentration in different parts of the carrier 1 in the area of the conductors 2 and 3. Secondly, the particle flux field of the space environment, moving the carrier 1 free electric charges, couderay them with molecules and atoms (including molecules and atoms of the conductors and the housing container in which is placed the carrier 1 and the conductors 2,3), destroys the last (embossing electrons) and thus forms an additional number of free electric charges in the storage device 1 (as, indeed, in the conductors, and in building capacity).

To change the number of free electric charges in the storage device 1 according to the invention, the conductors 2,3 perform mobile. For example, to reduce the charges in the carrier 1 conductors 2,3 (Fig.2A) is set to one and the same vertical flow'AN particle field of the space environment was crossed by only one of the conductors 2,3. For this purpose, the conductors 2,3 move in the transverse direction, which allows to shift the conductors 2,3 relative to each other so that the conductors do not overlap each other. To adjust the amount of vacant), moving them in the longitudinal direction. With increasing distance between conductors 2,3 current and voltage in the external circuit 5 decreases and Vice versa - the decrease of the distance leads to an increase of these characteristics.

Changing the strength of the electric current is observed when the rotation of one or both of the two conductors 2,3 (Fig.3) in a vertical or horizontal plane with respect to their longitudinal axes, because this changes the angle at which the vertical flow'AN particle field space environment permeates each of the conductors, resulting in a change in the degree of impact of the particle flux on the corresponding conductor. To vary the number of free electric charges, and hence the parameters of the electric current and the rotation of the at least one wire 2 (Fig.4) about the axis 6, outside of the guide. In addition, the conductors 2,3 (Fig.4,5) or one of them can be fixed in one of the positions and their subsequent movement in the longitudinal or transverse direction.

To increase the number of free electric charges, conductors 2,3 can be connected to each other, for example, by using additional Explorer 7 (fnia allows you to vary the amount of free electric charges, consequently, the characteristics of the resulting electric current in a wide range.

1. The method of formation of an additional quantity of free electric charges and their directional move in the media, which consists in the fact that the medium is free of electric charges with conductors placed in the streams of particles fields of the space environment in the immediate vicinity of the screen so that at least one vertical particle flux field of the space environment, oriented to the center of gravity of the screen is held simultaneously at least one surface, at least one conductor and at least as small as desired, the surface of the carrier of free electric charges, characterized in that the conductors do mobile.

2. The method according to p. 1, characterized in that the conductors move in the longitudinal or transverse direction.

3. The method according to p. 1 or 2, characterized in that at least one conductor rotate about its longitudinal or transverse axis.

4. The method according to p. 1 or 2, characterized in that at least one conductor rotate relative to the outside of its axis.

5. The method according to p. 3 or 4, characterized by peremeshheniem him in the longitudinal or transverse direction.

6. The method according to any of paragraphs.1 to 5, characterized in that the conductors are connected to each other.

 

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