POWER PLANT WITH PULSE DETONATION COMBUSTION OF FUEL Russian patent published in 2018 - IPC F02C5/00 F01K23/10 

Abstract RU 2663607 C1

FIELD: physics.

SUBSTANCE: invention relates to power plants with pulse detonation combustion of fossil or synthetic combustible materials that can be used, for example, in electric power plants or in industrial enterprises as part of various technological complexes for obtaining electromechanical energy, including in arctic conditions. Method is proposed in which shock waves and pulsed high-speed jets of detonation products, before being directed to a traditional turbocharger, first rotate a massive toothed flywheel, and then dissipate in the intermediate damping volume, resulting in the fact that the manufacturer's maximum permissible load on the traditional turbocharger is not exceeded, and high-temperature detonation products are further used to generate thermal, mechanical and electrical energy using known gas and steam turbine power plants. Proposed method is implemented in the proposed device including a pulse detonation tube, an intermediate damping volume, a turbocharger, an air and fuel supply system, an ignition system and a cooling system in which a toothed flywheel in the sealed housing and an intermediate damping volume are connected to the pulse detonation tube, from which high-temperature detonation products are further supplied to known gas and steam turbine power plants for obtaining thermal, mechanical and electrical energy.

EFFECT: invention provides for the generation of electrical, mechanical and thermal energy by means of shock waves and high-speed jets of detonation products generated by the pulse detonation combustion of fossil or synthetic combustible materials, in power plants with traditional turbochargers without exceeding the maximum permissible loads prescribed by the manufacturer.

7 cl, 5 dwg

Similar patents RU2663607C1

Title Year Author Number
ENERGY-SAFE COMBINED POWER PLANT 2024
  • 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
RU2826039C1
METHOD FOR INITIATING DETONATION IN PIPE WITH COMBUSTIBLE MIXTURE AND DEVICE FOR ITS IMPLEMENTATION 2017
  • Frolov Sergej Mikhajlovich
  • Smetanyuk Viktor Alekseevich
  • Frolov Fedor Sergeevich
  • Nabatnikov Sergej Aleksandrovich
RU2672244C1
METHOD OF ORGANISING WORKING PROCESS IN TURBOJET ENGINE WITH CONTINUOUSLY-DETONATING COMBUSTION CHAMBER AND DEVICE FOR ITS IMPLEMENTATION 2015
  • Avdeev Konstantin Alekseevich
  • Vovk Mikhail Yurevich
  • Dubrovskij Aleksej Vladimirovich
  • Marchukov Evgenij Yuvenalevich
  • Petrienko Viktor Grigorevich
  • Frolov Sergej Mikhajlovich
  • Frolov Fedor Sergeevich
RU2620736C1
METHOD OF DESALINATION OF WATER AND DEVICE FOR ITS IMPLEMENTATION 2018
  • Frolov Sergej Mikhajlovich
  • Nabatnikov Sergej Aleksandrovich
  • Smetanyuk Viktor Alekseevich
  • Avdeev Konstantin Alekseevich
  • Frolov Fedor Sergeevich
RU2688764C1
METHOD FOR OBTAINING HIGHLY OVERHEATED STEAM AND DETONATION STEAM GENERATOR DEVICE (OPTIONS) 2018
  • Frolov Sergej Mikhajlovich
  • Smetanyuk Viktor Alekseevich
  • Avdeev Konstantin Alekseevich
  • Nabatnikov Sergej Aleksandrovich
RU2686138C1
PULSE-DETONATION METHOD FOR PRODUCING ALKENES AND ALKINES AND A DEVICE FOR ITS IMPLEMENTATION 2019
  • Frolov Sergej Mikhajlovich
  • Avdeev Konstantin Alekseevich
  • Nabatnikov Sergej Aleksandrovich
  • Smetanyuk Viktor Alekseevich
  • Shulakov Konstantin Dmitrievich
RU2744454C1
METHOD OF GASIFICATION OF COAL IN A HIGHLY OVERHEATED WATER VAPOR AND DEVICE FOR ITS IMPLEMENTATION 2018
  • Frolov Sergej Mikhajlovich
  • Smetanyuk Viktor Alekseevich
  • Nabatnikov Sergej Aleksandrovich
RU2683751C1
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
METHOD FOR GENERATION OF HIGH-SPEED SHOCK WAVE IN IMPACT PIPE 2020
  • Akimov Yurij Vladimirovich
  • Bykova Natalya Germanovna
  • Zabelinskij Igor Evgenevich
  • Kozlov Pavel Vladimirovich
  • Levashov Vladimir Yurevich
  • Tunik Yurij Vladimirovich
RU2744308C1
TURBO ENGINE AND METHOD FOR OPERATION THEREOF 2017
  • Vovk Mikhail Yurevich
  • Ivanov Vladislav Sergeevich
  • Marchukov Evgenij Yuvenalevich
  • Petrienko Viktor Grigorevich
  • Frolov Sergej Mikhajlovich
RU2674172C1

RU 2 663 607 C1

Authors

Frolov Sergej Mikhajlovich

Smetanyuk Viktor Alekseevich

Nabatnikov Sergej Aleksandrovich

Streletskij Yurij Dmitrievich

Avdeev Konstantin Alekseevich

Dates

2018-08-07Published

2017-10-05Filed