POWER SUPPLY SYSTEM FOR STAND ALONE BUILDING Russian patent published in 2009 - IPC F24D15/02 

Abstract RU 2352866 C1

FIELD: heating.

SUBSTANCE: present invention pertains to power supply systems of buildings, with a structure closed on the periphery, with a courtyard covered by a cupola. The power supply system for stand alone buildings with a courtyard covered by a cupola, is provided with high- and low-temperature heat accumulators, energetically linked with exterior and interior alternative sources of energy (for example windmill, solar cells, solar collecting panels, isotope heat sources, low-temperature sources - air, ground, water etc.), as well as with users of heat and electrical energy in the stand alone building, generated by an electrical generator, powered by a controlled steam power installation with a steam generator, thermally linked with at least a high-temperature heat accumulator, steam engine and a condenser. At the centre of the courtyard of the building, there is a multi-channel pipe support with outlet channels for air from under the cupola and channels for inlet of air from the atmosphere, kinematically linked to the cupola and thermally linked with a heat exchange device, for example heat exchangers, heat pipes, heat pumps and a low-temperature heat accumulator, provided with an extra low-temperature section. The condenser of the steam power installation is thermally linked to this extra section at, for example below zero temperature on the Celsius scale, which, through the heat from the main heat pump, powered mainly by the steam power installation, is thermally linked with the primary section of the low-temperature heat accumulator.

EFFECT: increased efficiency of the power supply system of low-rise closed buildings, increase in light energy coming into the building and its conversion to electrical energy, increase in environmental friendliness of the power supply system and the interior of the building itself.

8 cl, 1 dwg

Similar patents RU2352866C1

Title Year Author Number
DOME MULTIFUNCTIONAL BUILDING 2007
  • Britvin Lev Nikolaevich
  • Skutis Petr Antonovich
RU2373358C2
BUILDING WITH CLOSED THERMAL REGULATION CYCLE 2010
  • Lukashenok Valerij Anatol'Evich
RU2442869C2
TECHNOGENIC-RESISTANT BIOSPHERE MULTIFUNCTIONAL BUILDING 2008
  • Britvin Lev Nikolaevich
  • Remizov Aleksandr Nikolaevich
RU2418931C2
POWER SUPPLY SYSTEM 2002
  • Britvin L.N.
  • Britvina T.V.
  • Shchepochkin A.V.
RU2233387C2
OFF-LINE SURVIVAL SYSTEM 2002
  • Antonov E.G.
  • Baklunov A.M.
  • Britvin L.N.
  • Britvin Eh.N.
  • Shchepochkin A.V.
RU2215244C1
SYSTEM FOR AUTONOMOUS POWER SUPPLY TO ELECTRICAL POWER CONSUMERS OF TOWER MESH STRUCTURE 2015
  • Ashurly Zaur Ismailovich
  • Molokhina Larisa Arkadevna
RU2584057C1
MICRO-COGENERATION UNIT OPERATING ON RENEWABLE ENERGY SOURCES 2016
  • Yasakov Nikolaj Vasilevich
RU2608448C1
SELF-SUSTAINED POWER AND HEAT SUPPLY SYSTEM FOR BUILDING 2014
  • Shpadi Andrej Leonidovich
  • Dikov Aleksandr Sergeevich
RU2569403C1
WINDMILL-ELECTRIC GENERATING SYSTEM 2000
  • Chabanov Alim Ivanovich
  • Chabanov V.A.
  • Pavljuk Vitalij Grigor'Evich
  • Andrianov Ivan Timofeevich
  • Smarzh Ivan Il'Ich
  • Korolev V.M.
  • Sobolev V.M.
  • Titov N.F.
  • Golovchenko A.I.
  • Ryzhenkov A.Ja.
  • Malenkov A.G.
  • Elagin V.F.
RU2199023C2
MINI CHP, WORKING ON RENEWABLE SOURCES OF ENERGY 2016
  • Yasakov Nikolaj Vasilevich
RU2643877C2

RU 2 352 866 C1

Authors

Britvin Lev Nikolaevich

Britvina Tat'Jana Valer'Evna

Shchepochkin Aleksej Vital'Evich

Dates

2009-04-20Published

2007-08-03Filed