DISTRIBUTED THERMAL POWER PLANT AND DEVELOPMENT METHOD OF IT Russian patent published in 2011 - IPC E04H5/02 F03D9/02 

Abstract RU 2434106 C2

FIELD: power industry.

SUBSTANCE: distributed thermal power plant includes single electric generating units each of which consists of synchronous salient pole machine with the drive, automatics module with computer, local electric networks consisting of two or several electric generating units closely located to each other and central control panel. At that, single electric generating units and local electric networks are combined by means of general route of electric communications; at that, drive of electric generating unit consists of several similar levers - carriers attached in horizontal plane with internal ends to rotor shaft of electric machine, and external ends of carriers are equipped with equal sources of kinetic energy, each of which consists of traction electric engine and air engine, the electric power supply of which is provided with independent auxiliary electric generating units by means of internal contact network, and general route of electric communications consists of line of high voltage conductors, line of electric supply conductors of traction electric engines and line of remote control conductors, which is connected to central control panel; at that, high voltage line is connected to external energy-intensive consumer of electric energy. Thermal power plant development method is also described.

EFFECT: creation of reliable energy potential at low costs and operating expenses for a long time.

2 cl, 3 dwg

Similar patents RU2434106C2

Title Year Author Number
ELECTROMOTIVE FORCE SOURCE 2002
  • Kochergin I.N.
RU2245457C2
AIR POWER PLANT 2008
RU2396459C1
POWER STATION 2004
  • Kochergin I.N.
RU2260233C1
METHOD FOR APPLICATION OF EARTH SURFACE SECTIONS, WHICH ARE NOT SUITABLE FOR CONTINUOUS ECONOMIC USE AND DEVICE FOR ITS REALIASATION 2008
RU2398070C1
METHOD FOR DEVELOPMENT OF POWER PLANT 2008
RU2398069C1
METHOD OF TRANSPORTATION AND RAILWAY COMPLEX FOR ITS IMPLEMENTATION 2015
  • Biryuk Vladimir Vasilevich
  • Shimanov Artem Andreevich
  • Sheludko Leonid Pavlovich
  • Tsybizov Yurij Ilich
RU2624138C2
METHOD OF POWER SUPPLY TO ELECTRIC COLLECTORS MAINTAINING CONTINUOUS PRODUCTION PROCESS AT INDUSTRIAL FACILITIES 2007
  • Martynov Evgenij Vasil'Evich
  • Shkedov Vladimir Mikhajlovich
  • Kudrjashov Vladimir Nikolaevich
  • Galimov Ruzil Khabibulkhakovich
  • Zhilin Sergej Jur'Evich
RU2352046C1
MACHINE EVACUATION METHOD AND DEVICE FOR IMPLEMENTATION THEREOF 2019
  • Prutchikov Igor Olegovich
  • Grechushkin Igor Vasilevich
  • Sergeev Vladislav Vladimirovich
  • Fadeev Dmitrij Yurevich
  • Kamlyuk Vasilij Vladimirovich
  • Ivanov Ruslan Mikhajlovich
  • Sizko Dmitrij Vladimirovich
RU2724194C1
THERMAL POWER PLANT WITH OPEN TURBINE HALL 2009
RU2438228C2
PIPELINE DIAGNOSTIC ROBOT 2018
  • Syryamkin Vladimir Ivanovich
  • Gutsul Vladimir Ivanovich
  • Ugryumov Dmitrij Aleksandrovich
  • Ilichev Vadim Nikolaevich
  • Syryamkin Maksim Vladimirovich
  • Firsov Ivan Sergeevich
RU2707644C1

RU 2 434 106 C2

Authors

Dates

2011-11-20Published

2009-02-04Filed