External electric field alteration object protector

FIELD: medicine.

SUBSTANCE: external electric field alteration object protector is offered for generation of electric field of specified electric field intensity nearby living and nonliving objects including ground-isolated close-meshed mesh. Protector has closure failure of mesh surface shape, accumulator for mesh energising providing required potential difference between object and mesh, voltage control, mesh wire covering, mesh space shape variability, mesh frame reinforcement with nonconductor and protected object grounding.

EFFECT: invention allows for controlled voltage of generated electric field.

2 dwg

 

The invention relates to the field of medicine and biomechanics associated with the study of the influence of changes in the external electric field and other atmospheric influences on animate and inanimate objects, and can be used to protect these objects, particularly weather-sensitive people from the harmful effects of strong changes in the external electric field near the earth's surface and in many other situations.

Closest to the claimed device is a Faraday cage [1], within which is supported a zero electric field.

The disadvantage of the Faraday cage is the inability to specify a certain electric field strength corresponding to, for example, the natural strength of the electric field near the Earth's surface.

The claimed device is aimed at addressing this shortcoming by creating effective ways to control the intensity of the generated electric field.

This result is achieved in that the device is used to protect against changes in the external electric field and to create a certain electric field strength near the animate and inanimate objects, including isolated from earth wire metal mesh, different misclose shape of the surface mesh, the presence of the battery on which I feed to the grid voltage, creating the necessary potential difference between the object and the grid, adjust this voltage, the wire insulation metal wall, a flexible change of the spatial mesh, its strengthening in the frame of non-conductive material and grounded to the protected object.

Distinctive features of the claimed device are

- nonclosure of the shape of the surface mesh;

- the presence of a battery for supplying to the grid voltage, generate a potential difference between the object and the grid;

adjustment of this tension;

insulated wire metal mesh;

- the flexibility of changing the spatial shape of the grid;

- strengthen the grid in the frame of non-conducting material;

- grounding of the protected object.

Nonclosure of the surface mesh, in contrast to the Faraday cage with no inside electric fields, allows you to create around the object, the electric field necessary tension.

The voltage applied to the grid and its regulation provide for the establishment of the necessary potential difference between the object and the grid, thereby securable object is in the electric field required, for example corresponding to the natural Ground surface tension, which protects the object from outside the artificial electric fields of high intensity, and changes the electric component of the electromagnetic field of the Earth, occurring due to various atmospheric phenomena. The value supplied to the grid voltage depends on the distance to the surface of the protected object.

The wire metal mesh is necessary to prevent contact between the protected object and the grid.

The flexibility of changing the spatial shape of the fine grid is needed to accommodate the specific parameters and the shape of the protected object.

Strengthening the grid in the frame of non-conducting material necessary for the fixation of the flexible mesh near the protected object.

The grounding of the protected object is one of the conditions to develop in the vicinity of this object is constant, necessary, for example close to the natural electric field intensity. When the ground potential of the protected object becomes equal to the Ground potential.

The essence of the claimed invention is illustrated figure 1, 2 and the following description. Figure 1 is a schematic diagram of a device that contains: fine metal mesh 1, the battery 2 with a predetermined voltage, the voltage regulator 3, the frame of non-conducting material 4, the grounding 5. Figure 2 presents a schematic diagram of the experimental setup, which includes: a capillary 1, the which with differential pressure creates a flow of blood in the direction indicated by the arrow, the electrode chamber 2 filled with the electrolyte solution, membrane filters 3, providing electrical contact between the electrode chambers and capillary blood, platinum electrodes 4, when applying for that tension in a capillary tube, an electric field that generates the directed movement of erythrocytes 5.

The creation of a near earth object, an electric field with intensity close to the natural, is fed to the grid voltage, the magnitude of which depends on the distance of the grid to the protected object and is determined by the formula:

U=E·1,

where E=1.3 In/cm electric field intensity near the surface of the Earth,

l - distance from the protected object to the grid, see

The claimed device allows, in particular, to maintain a constant tension generated near the protected object to the electric field. This is especially important for weather-sensitive people. In addition, protection against changes in external electric fields required in a number of technical devices for growing plants, when working around wires with high voltage, in space vehicles and in various experiments in space, for example when growing crystals, etc.

As you know, the Earth has a negative electric charge, and natural stress the te electric field near the Earth's surface is 1.3 per centimeter [1]. Changes to this tension, for example, due to atmospheric phenomena during thunderstorms, etc. significantly affect the flow of blood in humans and some animals, which is most vividly seen in the small capillary vessels. In these small capillary vessels particularly important role of the negative charge of the erythrocytes, the speed of which depends not only on the pressure drop in the capillary vessels, but on the magnitude of the electric charge of the erythrocyte membrane, and hence on the parameters of the external electric field. Us, in particular, has conducted experiments to study the mobility of red blood cells in an electric field, it was noticed that particularly erythrocytes react to abrupt changes of the parameters of an external electric field.

As you know, weather-sensitive people when changing atmospheric conditions appear various negative symptoms, particularly headaches caused by impaired blood supply to the brain. Note that, because brain cells are charged positively, and the erythrocytes is negative, then the role of the Coulomb force this significantly increases, and accordingly increases the reaction to changes in the external atmospheric conditions.

The proposed device allows you to keep near the protected object permanent on raganot electric field, for example, close to natural, but also necessary to change the value of the tension in one direction or another.

The proposed device is extremely compact and can be located, for example, in conventional headwear. It is essential that the head is the most vulnerable and important organ, and that its protection is the most important.

Check the claimed technical result was as follows.

Was constructed a prototype device in accordance with the General scheme presented in figure 1. Conducted survey of capillary vessels in the rabbit ears with constant and varying the voltage supplied to the grid. It is shown that when the intensity of the electric field in comparison with the natural blood flow in capillary vessels is markedly impaired, and when returning to the natural value of intensity of 1.3 V/cm - returns to normal. In addition, in the pilot plant scheme is presented in figure 2, were conducted laboratory studies of the effects of external electric fields of varying intensity on the movement of negatively charged red blood cells.

The tests showed the dependence of the velocity of the erythrocytes on the intensity of the applied electric field. Note that in the finest capillaries, compared to the transverse size of the m of the erythrocyte, the pressure gradient is almost zero, and the electrical forces of interaction are crucial.

Low cost components, ensuring the operation of the device, its reliability, ease of use and great demand in it makes the proposed device is very useful and can, in particular, without any drugs to alleviate negative symptoms in many weather-sensitive people when a sudden change in atmospheric conditions. Such devices are extremely necessary in medicine, in agriculture and in the number of technical devices.

Sources of information

1. G.S. Landsberg. Elementary physics. Vol.2. M.: Nauka. 1972. 527 S.

Device for protection of live objects from changes in the external electric field by creating a specific electric field strength near objects, including isolated from earth wire metal mesh, characterized in that it contains a battery for supplying voltage to the specified metal grid and the voltage regulator, and the specified metal mesh is made open forms with the ability to easily change its shape and fixed in the frame of non-conducting material, metal wire mesh is made isolated, the device is made with the possibility of grounding Conn is imago object.



 

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