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FISENKO VLADIMIR VLADIMIROVICH

Overview
  • Total Patents
    20
About

FISENKO VLADIMIR VLADIMIROVICH has a total of 20 patent applications. Its first patent ever was published in 1996. It filed its patents most often in Russian Federation, United States and WIPO (World Intellectual Property Organization). Its main competitors in its focus markets engines, pumps and turbines, environmental technology and thermal processes are SAKOU GIKEN KK, METCALFE RICHARD DAVID and JAMES METCALFE.

Patent filings in countries

World map showing FISENKO VLADIMIR VLADIMIROVICHs patent filings in countries

Patent filings per year

Chart showing FISENKO VLADIMIR VLADIMIROVICHs patent filings per year from 1900 to 2020

Top inventors

# Name Total Patents
#1 Fisenko Vladimir Vladimirovich 10
#2 Fisenko V V 10

Latest patents

Publication Filing date Title
US2012168526A1 Supersonic nozzle
US2012145050A1 Apparatus for combustion products utilization and heat generation
US8104745B1 Heat-generating jet injection
US2012125954A1 Supersonic nozzle for boiling liquid
RU2221935C2 Method of operation of jet heat-liberating plant and jet heat-liberating plant for implementing proposed method
RU2202055C2 Fluid-type heat-generating plant (versions)
RU2169297C1 Method of regenerative heating of feed water in jet heater
RU2155280C1 Gas-liquid jet device
RU2144145C1 Method of operation of heat generating plant and jet heat generating plants for implementing this method
RU2142581C1 Jet condenser unit of steam turbine and its operating process (options)
RU2142580C1 Fluid-jet deaeration method and jet-type deaeration unit
RU2132004C1 Method of jet deaeration and jet unit for realization of this method
WO9814737A1 Method for converting the energy of a liquid flow into thermal energy and equipment for realising the same
RU2143598C1 Jet plant and process of its operation
RU2110701C1 Method of operation of heat-generating jet apparatus (versions)
RU2127832C1 Method of operation of ejector heat-generating plant
RU2115831C1 Method of regenerative preheating of feed water in jet preheater
RU2114326C1 Method for converting fluid jet energy to heat in fluidic installation
RU2115027C1 Pump-ejector plant with liberation of thermal energy