ENERGY-SAFE COMBINED POWER PLANT Russian patent published in 2024 - IPC F02C5/00 

Abstract RU 2826039 C1

FIELD: electric power industry.

SUBSTANCE: proposed invention relates to electric power engineering and transport-power plants with continuous and/or pulse detonation-explosive combustion of fossil or synthetic energy carriers and fuels. Purpose of the present invention is to create a power plant of a higher technical level (generation) due to the combined use of various structural and technical schemes of power plants and conversion principles, conversion and use of internal chemical energy of primary energy carriers in the form of fossil and synthetic combustible substances and/or mixtures thereof. Power plant is characterized by essential distinctive features, which together allow to carry out thermodynamically high-efficiency detonation-explosive combustion of fuel mixture to obtain high-temperature, high-speed jets of combustion products relatively safe in production, transportation, storage and use of initial fuel by means of shock waves generated by continuous spin and/or pulsed detonation-explosive combustion. Proposed power plant provides expansion of capabilities and ways to increase energy efficiency and energy safety in a wide range of conditions of application of power plants, such as engines of space and aviation equipment, land and water (sea) vehicles, as well as objects of generation of small and large thermal power engineering.

EFFECT: providing the possibility of the installation operation according to the unified (single) highly efficient method of burning the energy carriers with different aggregate state and calorific value, including cheaper and readily available primary energy carriers (initial fuels), with increased degree of fire and explosion safety of power plant.

1 cl, 5 dwg

Similar patents RU2826039C1

Title Year Author Number
ENVIRONMENTALLY SAFE POWER PLANT BASED ON DETONATION COMBUSTION CHAMBER 2013
  • Golub Viktor Vladimirovich
  • Gurentsov Evgenij Valer'Evich
  • Emel'Janov Aleksandr Valentinovich
  • Eremin Aleksandr Viktorovich
  • Fortov Vladimir Evgen'Evich
RU2564658C2
COMBUSTION METHOD OF HYDROCARBON FUEL IN GAS TURBINE ENGINE OR PLANT 2012
  • Kuleshov Pavel Sergeevich
  • Lukhovitskij Boris Iosifovich
  • Starik Aleksandr Mikhajlovich
  • Titova Natalija Sergeevna
RU2511893C1
DEVICE FOR PULSE IGNITION OF COMBUSTIBLE MIXTURE 2012
  • Frolov Sergej Mikhajlovich
  • Aksenov Viktor Serafimovich
RU2490491C1
JET HOVERCRAFT 2013
  • Artamonov Aleksandr Sergeevich
  • Artamonov Evgenij Aleksandrovich
RU2537663C1
METHOD FOR MINING COAL DEPOSITS AND COMPLEX OF EQUIPMENT FOR ITS REALIZATION 1993
  • Il'Jusha A.V.
  • Ionov V.G.
  • Burlov V.Ju.
  • Khudin Ju.L.
  • Martynov L.D.
RU2039870C1
METHOD FOR IGNITION AND STABILIZATION OF COMBUSTION OF FUEL-AIR MIXTURE BY PULSE OPTICAL QUASI-STATIONARY DISCHARGES AND ITS IMPLEMENTATION DEVICE 2020
  • Sattarov Albert Gabdulbarovich
  • Sochnev Aleksandr Vladimirovich
  • Ziganshin Bulat Rustemovich
RU2774001C1
METHOD FOR OPERATION OF DETONATION TWO-STROKE INTERNAL COMBUSTION ENGINE (VERSION) 2013
  • Popovich Vladimir Andrianovich
RU2579287C2
POWER PLANT 0
  • Belyaev Vyacheslav Evgenevich
  • Kosoj Aleksandr Semenovich
  • Korotich Evgenij Viktorovich
  • Ravich Aleksandr Viktorovich
  • Sinkevich Mikhail Vsevolodovich
SU1749511A1
KRISHTOP DETONATING POWER UNIT (KDPU) AND KDPU OPERATION METHOD (EMBODIMENTS) 2022
  • Krishtop Anatolij Mikhajlovich
RU2794396C1
METHOD OF CONTROLLED FUEL COMBUSTION 2011
  • Papko Jurij Aleksandrovich
  • Shadrin Konstantin Valer'Evich
RU2479745C2

RU 2 826 039 C1

Authors

Ilyusha Anatolij Vasilevich

Ambartsumyan Garnik Levonovich

Gavrikov Nikolaj Evgenevich

Topilin Sergej Vyacheslavovich

Pankov Dmitrij Anatolevich

Khangazheev Andrej Nikolaevich

Gorelkina Ekaterina Nikolaevna

Temkin Vyacheslav Vitalevich

Pevgov Vyacheslav Gennadievich

Andreev Mikhail Anatolevich

Dates

2024-09-03Published

2024-02-22Filed