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METHOD OF THERMOELECTRIC COOLING OF BODIES IN ELECTRIC FIELD
AND DEVICES FOR ITS IMPLEMENTATION
Dudyshev Valery Dmitrievich, Russia, Samara
Samara Technical University
ESSAY
While the technology of obtaining cold in industry and in domestic refrigeration plants is very energy-intensive and complex, and the process of cooling the bodies is inertial and connected with the use of complex electrical equipment.
We offer fundamentally new simple and effective, fast-acting methods for cooling a body of different physical nature in strong electric fields.
DESCRIPTION OF THE NEW THERMOELECTRIC EFFECT AND ITS IMPLEMENTATION
Such extraction of molecules and body atoms by thermal energy is most effective and noncontact can be realized by a strong vector electric field (with a voltage of more than 1-5 kV / cm ). For example, to cool the liquid in an electric field ( Fig . 1 ). One high-voltage electric potential is fed directly to a heated body, for example, 30-40 kV . Through the electrode 2 , placed in the liquid itself 1 - from a low-power high-voltage source of voltage 4-source of the electric field. The second electric potential is fed through a pointed electrode 3 located above the liquid itself and is isolated from the test body by an air gap. Experimentally, I previously discovered and repeatedly observed the effect of intense cold evaporation of cooling liquids in a strong, constant-current electric field with simultaneous rotation of this liquid above the remote electrode and the emergence of intense directed electromagnetic radiation along the vector (lines of force) of this field. The physical essence of this effect is that field lines of force and Coulomb forces inhibit thermal motions of molecules and atoms polarized in the field, directed across and at an angle to them other than zero. Therefore, there is a reorientation of the dipoles of molecules and the thermal motion of these particles precisely over the field vector, as a less energy-consuming kind of motion in this field. Due to the increase in the density of thermal energy along the axis of the field vector.
Moreover, the latent, internal energy of the heated substances is released - excess thermal energy is discharged by the photons of their atoms and molecules in the form of directed electromagnetic radiation (mainly in the infrared spectrum), which arises precisely from the field vector. The electric field is essentially an energy pump and a direct converter of the thermal energy of the body.
ATTENTION !
Explanations to the invention - are KNOW-HOW of the author and are provided
ON REQUEST on a commercial basis
print version
Author: Valery Dudyshev
PS The material is protected.
Date of publication 14.03.2005гг
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