(19)
(11) EP 1 808 651 A3

(12) EUROPEAN PATENT APPLICATION

(88) Date of publication A3:
26.10.2011 Bulletin 2011/43

(43) Date of publication A2:
18.07.2007 Bulletin 2007/29

(21) Application number: 06425768.6

(22) Date of filing: 10.11.2006
(51) International Patent Classification (IPC): 
F24J 3/00(2006.01)
(84) Designated Contracting States:
AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HU IE IS IT LI LT LU LV MC NL PL PT RO SE SI SK TR
Designated Extension States:
AL BA HR MK RS

(30) Priority: 17.01.2006 RU 2006100954
17.01.2006 RU 2006100956
17.01.2006 RU 2006100960

(71) Applicant: Vortexco Technologies Limited
P.C. 1095, Nicosia (CY)

(72) Inventors:
  • KURNOSOV Nikolai Efimovich
    440062, Penza (RU)
  • PICHUGIN Valery Mikhailovich
    440061, Penza (RU)
  • INOZEMTSEV, Dmltry Sergeevich
    109180, Moscow (RU)
  • KREKHOV Dmitry Gennadlevich
    117, Moscow (RU)

(74) Representative: Adorno, Silvano et al
Società Italiana Brevetti S.p.A. Via Carducci 8
20123 Milano
20123 Milano (IT)

   


(54) Cavitation thermogenerator and method for heat generation by the caviation thermogenerator


(57) A cavitation thermogenerator is proposed providing heat generation by creation in a flow of liquid of zones of lowered and raised pressure and moving of a mixture of liquid with the cavitation bubbles formed in the zone of lowered pressure, from the zone of lowered pressure into the zone of raised pressure. The cavitation thermogenerator comprises a coaxially located hollow housing (1) having a bottom (2), a flow twisting means (3) with a cylindrical internal surface, a nozzle (4) and a braking element. The flow twisting (3) means is located between the nozzle (4) and the housing (1), and internal surface of the flow twisting means (3) forms a uniform cavity with the internal surface of a housing (1). A through aperture (5) is formed in the housing bottom (2) at the axis thereof, and the braking element it is formed by a face part of the nozzle (4) adjoining to the flow twisting means (3) which input aperture (5) has a smaller diameter than internal diameter of said cavity. The thermogenerator is placed in a tank (11) with a liquid medium (water) which has a function of a heat-carrier. By means of the pump (6) the liquid moves from the tank (11) into the thermogenerator flow twisting means (3) providing functioning thereof.







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