DE2738435A1 - Power generator using solar and wind energy conversion - has parabolic mirror contg. bladed rotor with appropriate air nozzles - Google Patents

Power generator using solar and wind energy conversion - has parabolic mirror contg. bladed rotor with appropriate air nozzles

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Publication number
DE2738435A1
DE2738435A1 DE19772738435 DE2738435A DE2738435A1 DE 2738435 A1 DE2738435 A1 DE 2738435A1 DE 19772738435 DE19772738435 DE 19772738435 DE 2738435 A DE2738435 A DE 2738435A DE 2738435 A1 DE2738435 A1 DE 2738435A1
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water
turbine
air
rotor
solar
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DE19772738435
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German (de)
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Bruno Schwenteit
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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F03MACHINES OR ENGINES FOR LIQUIDS; WIND, SPRING, OR WEIGHT MOTORS; PRODUCING MECHANICAL POWER OR A REACTIVE PROPULSIVE THRUST, NOT OTHERWISE PROVIDED FOR
    • F03DWIND MOTORS
    • F03D9/00Adaptations of wind motors for special use; Combinations of wind motors with apparatus driven thereby; Wind motors specially adapted for installation in particular locations
    • F03D9/007Adaptations of wind motors for special use; Combinations of wind motors with apparatus driven thereby; Wind motors specially adapted for installation in particular locations the wind motor being combined with means for converting solar radiation into useful energy
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F03MACHINES OR ENGINES FOR LIQUIDS; WIND, SPRING, OR WEIGHT MOTORS; PRODUCING MECHANICAL POWER OR A REACTIVE PROPULSIVE THRUST, NOT OTHERWISE PROVIDED FOR
    • F03BMACHINES OR ENGINES FOR LIQUIDS
    • F03B13/00Adaptations of machines or engines for special use; Combinations of machines or engines with driving or driven apparatus; Power stations or aggregates
    • F03B13/12Adaptations of machines or engines for special use; Combinations of machines or engines with driving or driven apparatus; Power stations or aggregates characterised by using wave or tide energy
    • F03B13/14Adaptations of machines or engines for special use; Combinations of machines or engines with driving or driven apparatus; Power stations or aggregates characterised by using wave or tide energy using wave energy
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F05INDEXING SCHEMES RELATING TO ENGINES OR PUMPS IN VARIOUS SUBCLASSES OF CLASSES F01-F04
    • F05BINDEXING SCHEME RELATING TO WIND, SPRING, WEIGHT, INERTIA OR LIKE MOTORS, TO MACHINES OR ENGINES FOR LIQUIDS COVERED BY SUBCLASSES F03B, F03D AND F03G
    • F05B2220/00Application
    • F05B2220/70Application in combination with
    • F05B2220/708Photoelectric means, i.e. photovoltaic or solar cells
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/30Energy from the sea, e.g. using wave energy or salinity gradient
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/40Solar thermal energy, e.g. solar towers
    • Y02E10/46Conversion of thermal power into mechanical power, e.g. Rankine, Stirling or solar thermal engines
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/70Wind energy
    • Y02E10/72Wind turbines with rotation axis in wind direction

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Power Engineering (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Sustainable Development (AREA)
  • Sustainable Energy (AREA)
  • Wind Motors (AREA)

Abstract

Converter for solar and wind energy has a parabolic mirror contg. a bladed rotor rotatable about the axis of the mirror. The rotor has a hollow shaft extending to the focus of the mirror. A boiler located at the focus heats water within it and the shaft leads the resulting steam to the rotor blades to rotate the rotor by reaction propulsion as an alternative, or in addition, to propulsion by the wind.

Description

Heliotherm- und windkraftgenerator- (Konverter)Heliotherm and wind power generator (converter)

1. Die Erfindung betrifft einen aus mehreren Antriebsystemen angetriebenen -Sonnen und Windenergiekonverter.1. The invention relates to one driven by several drive systems -Sun and wind energy converter.

Der große Vorteil von Sonnen und Windkraftwerken lie?;t in ihrer Umweltfreudlichkeit, ein Sonnen und Windkraftwerk verbraucht weder Rohstoffe noch produziert es Abwasser oder sonstigen Müll. The great advantage of solar and wind power plants leaves in their Environmental friendliness, a solar and wind power plant uses neither raw materials nor it produces sewage or other garbage.

Verursach keinen Lärm. Da die schon bei der vergleichsweise recht niedrigen Umdrehungszahl von 100-1000 Umdrehungen pro Minute ihre volle Leistung erreichten. Don't make any noise. Since the comparatively right low revolutions per minute of 100-1000 revolutions per minute achieved.

Sonnen und Windenergieanlagen sind langlebig,wartungsfrei und zuverlässig. Sie müssen wirtschaftlich und von der Investition her tragbar sein. Im Aufbau unkompliziert,und sie nuß ist einen möglichst hohen Wirkungsgrad Energie aus uns ellen bekannten Energiequellen die dem Menschen die Natur so reichlich zur Verfügung stellt,genutzt werden. Solar and wind energy systems are durable, maintenance-free and reliable. They must be economical and affordable in terms of investment. Uncomplicated to set up, and The nut is the highest possible energy efficiency from energy sources known to us that nature makes so abundantly available to man.

2. Sonnen und -;,indenergiekonverter können an Land oder in Wasser stationiert werden. Erstens durch Stahlmasten oder Betonmasten.2. Solar and energy converters can be used on land or in water be stationed. First, through steel masts or concrete masts.

In wasser stationierte,-Sonnen und Windenergiekonverter- werden auf Inselplattformenmit Stahlmasten-Hydraulisches-elektrisches Wasserdruck-Kraftwerk-Windkraftturbine-Sonnenkraftturbine-Gasturbine Treibmittel H² +O² -Dampfturbine-Well kraft (Wasserwellen)- Luft-Kompressor-Antrieb durch Seegang, (-Ausgebaut und installiert) Bei hohem Energieanfall z.b.Windstärke 8-12 oder starke Sonneneinstrahlung im Hochsommer -Erzeugung von Wasserstoffgas durch Spaltung von Wasser rnit Hilfe von Katalysatore,oder Heißdampf. Stationed in water, sun and wind energy converters are on Island platforms with steel masts-hydraulic-electric water pressure-power station-wind power turbine-solar power turbine-gas turbine Propellant H² + O² - steam turbine wave power (water waves) - air compressor drive due to swell, (-Developed and installed) In the event of high energy levels, e.g. wind strength 8-12 or strong sunlight in midsummer -generating hydrogen gas by splitting water with the help of catalysts or superheated steam.

Siehe Fig.1 -Fig.2-Fig.3-Fig.4- Fig.5-3. Größen für Sonnen und Windenergieanlagen. See Fig.1-Fig.2-Fig.3-Fig.4- Fig.5-3. Sizes for solar and wind energy systems.

1. Kleinanlagen,Rotordurchmesser 10 bis 11 m, erzeugte Energie bei Vollast 3 bis8 kW,bei nur Windenergie-Rotormit Sonnenenergie das Doppelte und mehr. 1. Small systems, rotor diameter 10 to 11 m, generated energy at Full load 3 to 8 kW, with only wind energy rotor with solar energy double and more.

erzeugte Energie = 6 bis "20 kW, Siehe Konvektionsheizung: 2. mittlere Größe,Rotordurchmesser 36 m erzeugte Energie bei Vollast 100-300 kW, 3. große Anlagen,Rotordurchmesser 80m bis 120 m =1-3 MW, mit Sonnenenergie " = 120m 6-10 MW, Herkömmliche Windenergieanlagen (Windkonverter)sind nicht nach den neusten Stand der Technik, und daher im Wirkungsgrad benachteiligtden Sonnen und IWindenergieturbinen(Rotor) gegenüber. generated energy = 6 to "20 kW, see convection heating: 2nd medium Size, rotor diameter 36 m, generated energy at full load 100-300 kW, 3rd large systems, rotor diameter 80m to 120m = 1-3 MW, with solar energy "= 120m 6-10 MW, conventional wind turbines (Wind converters) are not state-of-the-art, and therefore in terms of efficiency disadvantaged compared to solar and wind energy turbines (rotor).

Fig. 2a Heliotherm und Windkraftgenerator P 27 38 435.6 Antrieb-Sonne und Windkraft Insel-Plattform. Hydraulisches-Wasserdruck-Kraftwerk 1- Insel-Plattform 3-Wasserdruckschacht-Heißluftstrahler-Sonnen-2- brennkammer mit2-Turbine-Treibstoff-H²+O²-Dampf-Zentrifuge-3- Injektor Vor und Rückstoß Wasserturbine-Waserablaufturbinen.Fig. 2a Heliotherm and wind power generator P 27 38 435.6 Sun drive and wind power island platform. Hydraulic water pressure power plant 1 island platform 3-water pressure shaft-hot air heater-solar-2- combustion chamber with 2-turbine-fuel-H² + O²-steam-centrifuge-3- Injector forward and recoil water turbine water drainage turbines.

4- Wind-Turbo-Generator 5- Hochspannungsleitung 6- Elektflsitätsraum 7- Wasserüberlau-Regler-8- Lüfter-Turbo 9- Überlaufrohre 4-6 StUck-oben 10- Insel-Plattform mit Aufbauten und Heliotherm -Windkraftgenerator 11- Überlaufleitung mit Druckminderventile 4-6 Stück 12- Wasserablaufturbinen 4-6 Stück 13- Katalysator H2 +02 Hybriden 4-6 Stück -Wasser und Sauerstoff Gasentwickler (Speicherung von Primärenergien)bei hohem Strom anfall. (Windstärke 8-12 cr.und starke Sonnereinstrahlung) 14- Luftkompressore 4-6 Stück 15- Wasserspeicher- Behälter mit Wasserüberlauf 16- Steigrohre für Vor und Rücksoß-Wasserdruckturbine (Wasserablauf) 17- Druck und Heißlutt-Injektor 18- Schwimmer-Antrieb durch Seegang für Druckluftkom-pressor 19- Tragfüße -4-6 Stück 20- Umformer-Travo-Gleichrichter-Batterien-Elektronen-Injektor-21- Supraleitende Spuhlen mit Leitschine-Helium-als Leiter-2750-22- Generator-(Lichtmaschine) 23- Kupplung -für Generator und Druckwasserturbine. 4- wind turbo generator 5- high voltage power line 6- electricity room 7- water overflow regulator-8- fan-turbo 9- overflow pipes 4-6 pieces-above 10- island platform with superstructures and Heliotherm wind power generator 11 overflow line with pressure reducing valves 4-6 pieces 12- water drainage turbines 4-6 pieces 13- catalyst H2 +02 hybrids 4-6 Piece of water and oxygen gas generator (storage of primary energies) at high Electricity incident. (Wind force 8-12 cm and strong sunlight) 14- air compressors 4-6 pieces 15- water storage tank with water overflow 16- riser pipes for pre and reverse water pressure turbine (water drain) 17- pressure and hot air injector 18- Float drive through swell for compressed air compressor 19- support feet -4-6 pieces 20-converter-travo-rectifier-batteries-electron-injector-21-superconductors Rinsing with guide rail-helium-as a conductor-2750-22- generator- (alternator) 23- Coupling - for generator and pressurized water turbine.

24- Drucklager für Druckwasserturbine(Segementlagerung) 25- Druckwasserturbine 26- Wassereintritt - 10-12 Stück und a-Absp.rrventile 27- Wassersteigrohre unten 28- Druckwasseraustritt-Wasserdruckturbine 29- Zentrifuge -für Frischwasserherstellung-Düngemittel- Chemikalien 30- Frischwassereintritt-Zentrifuge 31- Wassereintrittsventil- 4-6 Stück Tragfüße 32- Wasserverdrägungskörper,mit Antrieb 2 Schiffsschrauben 33- Lichtkabel- (Stromkabel) 34- Sonne und Windturbinenturm-Aussichturm-Fernsehübertragungsturm-Sendeantenne-Satellitenübertragung-Parabolspiegel-Antenne-Radargesteuert.(Computer-Mikroprozessor) Fig. 3-b Heliotherm und Windkraftgenerator (Konverter) P 27 38 435.6 AT: 19.8.77 Antrieb Sonne und Windkraft 1- Spiegelantenne-Gehäuse (Polyster-Alu) Doppelwandig 2- Generator (Rotor 2-8 Blätter) Drehbargelagert 3- Brennkanner Heizwiderstand- Brennlinse-Heißluttdüsen 4- Tragstützen für Rotor 6-8,Stück H. Zylinderwelle 5- Zylinderwelle-Rotoraufnahme und Reflektor (Parabolspiegel) 6- Gewindenutter Rollendrucklager (Kugellager) 7- Solarzellen 8- Lüfterklappen- hinten-9- Innen-Parabolspiegel und Solarzellen 10- Lüfterklappen- seitlich 11- Alu-Rohre 12- Antennensteuerung- (Computer- Mikroprozessor) siehe Radar-13- Besichtigungsturm- Fernsehübertragungen- für Satelitten Tel.24- pressure bearing for pressure water turbine (segment bearing) 25- pressure water turbine 26- water inlet - 10-12 pieces and a-Absp.rrventile 27- water riser pipes below 28- pressurized water outlet-water pressure turbine 29- centrifuge -for fresh water production-fertilizer- Chemicals 30- Fresh water inlet centrifuge 31- Water inlet valve- 4-6 pieces Support feet 32- water displacement body, with drive 2 propellers 33- light cable- (Power cable) 34- sun and wind turbine tower-observation tower-television transmission tower-transmitting antenna-satellite transmission-parabolic mirror antenna-radar controlled. (Computer microprocessor) Fig. 3-b Heliotherm and wind power generator (converter) P 27 38 435.6 AT: 19.8.77 drive Sun and wind power 1- mirror antenna housing (Polyster-Alu) double-walled 2- generator (Rotor 2-8 blades) Rotatingly mounted 3- burner can, heating resistor- burning lens-hot air nozzles 4- Support supports for rotor 6-8, piece H. Cylinder shaft 5- Cylinder shaft rotor holder and reflector (parabolic mirror) 6- threaded nut roller thrust bearing (ball bearing) 7- Solar cells 8- ventilation flaps- rear-9- interior parabolic mirror and solar cells 10- Ventilation flap- side 11- aluminum tubes 12- antenna control- (computer microprocessor) see Radar-13- viewing tower- TV transmissions- for satellites Tel.

14- Naturmagnete-4-6 Stück 15- Enteisungsheizung - Spulen für Rückstoßwicklung a Rotor 16- Primärspulen 17- Sekundärspulen 18- Brennlinse 19- Uiftrier-Travostation-Batterien-Generator-EIektronen-Injektor 20- Hochspannungsmast Leistung= N =Spannung U .Stromstärke .I Watt Vol Amp Leistung N=I² . R=U2 : II Arbeit A= U.I.t = I².R.t = (U2 :R).t Leistung 736 Watt= 1 PS, 1KW =1,36 PS Arbeit 1kWh = 1,36 PS! STD -- Wärme für 1 Wattsekunde.-1 Joule=1 Wattsek.= 0,239 cal.14- natural magnets-4-6 pieces 15- defrosting heater - coils for recoil winding a rotor 16- primary coils 17- secondary coils 18- focal lens 19- Uiftrier-Travostation-Batteries-Generator-Electron-Injector 20- high voltage pylon power = N = voltage U. Current intensity .I watt vol amp power N = I². R = U2: II work A = U.I.t = I².R.t = (U2: R) .t power 736 watts = 1 HP, 1KW = 1.36 HP work 1kWh = 1.36 HP! STD - heat for 1 watt second. -1 joule = 1 watt second = 0.239 cal.

1 kWh = 860 kcal L e e r s e i t e1 kWh = 860 kcal L e r s e i t e

Claims (5)

Patentansprüche: 1. Heliotherm-und Windkraftgenerator- (Konverter) Antrieb-Sonne und Windkraft- FUr Land und Wasser- Stationierung.Claims: 1. Heliotherm and wind power generator (converter) Propulsion-sun and wind power- for land and water- stationing. Snergie-heute und sorgen, dadurch gekennzeichnet,daß der Antrieb als Sonnen und Windkraftgenerator ausgebildet ist,mit Primärspulen an Generator Rotorblätter versehen, und als Rückstoßwicklung oder Enteisungs-Heizung (3) angeordnet sind.Der Generator (Rotor) ist drehbar auf einer stehenden Hohlwelle Rollendrucklager gelagert. Snergie-today and care, characterized in that the drive is designed as a solar and wind power generator, with primary coils on the generator Provided rotor blades, and arranged as a recoil winding or de-icing heater (3) The generator (rotor) can be rotated on a stationary hollow shaft with roller thrust bearings stored. Die Stirnseits des Rotors ist mit Solarzellen verschen,und dient als Heizung und Rückstoß der Rotorblätter und des Rotors,ferner Parabolspiegel-Antenne zur Aufnahme des Rotors,und an der Außenfläche angeordnete Sekundärspulen, sowie Brennkammer mit Brennlinse und Heizwiderstand-Luftdüsen,die im Parabolspiegel aufgeheizte Luft wird durch die Hohlwelle zur Brennkammer mittels Spiegel refielctiert,und erhitzt den Widerstand im Brennpunk,hierdurch wird die Luft erhitzt und durch die in Brennkammer befindlichen Düsen auf den Rotorschaufeln geleitet.Dadurch wird auch bei Windstille der Rotor in Drehung versetzt,und erzeugt Energie. The front side of the rotor is given away with solar cells, and serves as heating and recoil of the rotor blades and the rotor, furthermore parabolic mirror antenna for receiving the rotor, and secondary coils arranged on the outer surface, as well as Combustion chamber with burning lens and heating resistance air nozzles, which are heated in the parabolic mirror Air is reflected through the hollow shaft to the combustion chamber by means of a mirror and heated the resistance in the focal point, through which the air is heated and through the in the combustion chamber nozzles located on the rotor blades, which means that even when there is no wind the rotor rotates and generates energy. Durch die Kombienation von Sonne und Windenergie wird eine sehr gute wirtschaftliche Nutzung des Sonnen und Windgeneratos aus gewertet. The combination of sun and wind energy makes it a very good one economic use of solar and wind generators evaluated. 2. Die Parabolspiegel-Antenne dadurch gekennzeichnet nach Anspruch 1, daß ein Parabolspiegel mit Rotor aneinem Mast drehbar Axialhorizontal-wertikal angeordnet ist,und wie eine Radarsteuerung mit Computer elektrisch gesteuert wird, ferner Luftklappen bei verschiedenen Windrichtungen,die gewünschten Lufklappen geöffnet oder elektrisch geschloßen werden, Hierdurch wird der Wind auf den Rotor (Rotorblätter) in-die richtige Drehrichtung geleitet. 2. The parabolic mirror antenna characterized according to claim 1 that a parabolic mirror with rotor on a mast rotatable Axialhorizontal-Wertikal arranged, and how a radar controller is electrically controlled with a computer, furthermore air flaps with different wind directions, the desired air flaps open or electrically closed, this is the wind on the rotor (rotor blades) directed in the correct direction of rotation. 3. Parabolspiegel-Antenne nach den Ansprüchen 1 und 2,dadurch gekennzeichnet,daß auf einer Insel-Plattform ein eingebauter hydraulisch absenkbarer Wasserdruckschacht (Wasserdruckkörper) mit Aufteilung Wasserdruckturbine deren Bauweise die einer Vor -und Rückstoß-Turbine entspricht. Aus einem 2-teiligen Turbinengehäuse und der mehrfach hintereinander gestuften Turbinenanlage deren Läufer drehbar gelagert ist, Die oberhalb im Druckschacht befindlichen Luft und Sonnen-Gas-2- Turbinen dienen zun komprimieren der angesaugten Luft. Fig 1 Uber Brennlinsen wird die Luft in den Brennkammern durch Sonneneinstrahlung und Heizbleche erwärmt,gelangt durch den Injektor- (Heißluftstahler) mit den in den Steigerohren befindlichen Ablaufwasser, der Wasserdruck-Turbine und drückt durch die Hei@-luft das Wasser nach oben zu den Fallrohren in die Wasserablauf-Turbinen. 3. Parabolic mirror antenna according to claims 1 and 2, characterized in that a built-in hydraulically lowerable water pressure shaft on an island platform (Water pressure body) with division water pressure turbine whose construction is that of a pre -and recoil turbine equivalent. From a 2-part turbine housing and the multiple one behind the other stepped turbine system whose rotor is rotatably mounted, the above Air and solar gas 2 turbines in the pressure shaft are used to compress the sucked in air. Fig 1 The air in the combustion chambers is passed through focal lenses Solar radiation and heating panels heated, passes through the injector (Hot air gun) with the discharge water in the riser pipes, the water pressure turbine and pushes the water upwards to the downpipes in the water outlet turbines through the Hei @ air. Der Heißluftstrehler ist so ausgebildet das er wie sine Um@lspumpe arbeitet, und den Kreislauf des Abwassers von der Wasserdruck-Turbine zu den Ablauf-Turbinen bewirkt.Und die Reinhaltung des Wassers (See)durch die Unwälzung und Anreicherung von Sauerstoff-umweltfreudlich einwirkt: Das Prinzip der Wasserdruck und Strömungs-Turbine ist so zu vorstehen, daß das Gef-ille von Druck pr (Eintrittsdruck an d?r Turbine) die Durchsatzmenge-(Auftrieb)m =Archimedes Satz A=V.y Wassermenge= 15=y- @@@@@.y -10-Meter-Tauchtiefe-Wasser-v.= 10,000-KP M³ 1-Meter-cm³ 1 KP Wasserdruck. The hot air chaser is designed in such a way that it is like its oil pump works, and the circulation of the wastewater from the water pressure turbine to the discharge turbine And the purification of the water (lake) through the circulation and enrichment of oxygen has an environmentally friendly effect: The principle of water pressure and flow turbine is to be projected in such a way that the gradient of pressure pr (inlet pressure at the turbine) the flow rate- (buoyancy) m = Archimedes theorem A = V.y water volume = 15 = y- @@@@@. y -10-meter-diving-depth-water-v. = 10,000-KP M³ 1-meter-cm³ 1 KP water pressure. "Kinetische Energie Leistung-in elektrische Energie unformen@ Durch die Ausnutzung aller primär und Sekundär-Energie die uns die Natur so reich zur Verfügung stellt, ,ird ein relativ hoher Wirkungsgrad erreicht, und umweltfreudlicheEnergie erzeugt. "Kinetic energy power-transform into electrical energy @ by the exploitation of all primary and secondary energies that nature so richly gives us Provides, a relatively high degree of efficiency is achieved, and environmentally friendly energy generated. 4.Die Rückstoß-Turbine ist dadurch gekennzeichnet nach den Ansprüchen 1 bis @ das kein Rückschleg des Treibmittels-Wasserdruck-Dampf-Gas- zur Turbine erfolgen kann.Siche Fig-2+3 Im Wasserdruckkörper befindet sich - folgende - Teile-die Vor und Rückstoß-Wasserdruck-Wasserstoffgas-Luft+Sonnen-Turbinen.Wassersteigrohre-Heißluftstrahl er-Luftschacht-Generator-Lichtmaschine und Zentrifuge sowie Steuerzentrale-Regelanlagen.Katalysator-Supraleitende-Spulen.4.The recoil turbine is characterized according to the claims 1 to @ that no pushing back of the propellant-water pressure-steam-gas- to the turbine Fig-2 + 3 In the water pressure body there are - the following - parts Forward and recoil-water pressure-hydrogen gas-air + solar turbines. Water riser pipes-hot air jet He air shaft generator alternator and centrifuge as well as control center regulation systems. Catalyst superconducting coils. Die Versorgung mit Primär-Energie bei Windstille und Bewölkung. The supply of primary energy when there is no wind and cloudy. 5.Der Verdrängungskörper,dadurch gekennzeichnet,daß ein Wasserdruckschacht hydraulisch absenkbar in der Insel-Plattform eingebaut wird, durch eine genaue Wassertiefenregulierung bewirkt werden soll. Die Insel-Plattform kann durch eigen Antrieb beweglich oder auch Stationär verankert werden. Siehe Fig.2 bis 5.5. The displacement body, characterized in that a water pressure shaft Hydraulically lowerable is built into the island platform through precise water depth regulation should be effected. The island platform can be moved or by its own drive can also be anchored stationary. See Fig. 2 to 5. Die Verdrängungskörner des unteren Systems bestehen aus einen absenkbaren viereck oder ringartigen Körper nit sechs oder vier starken Säulen der das Arbeits und Wohndeck trägt. The displacer of the lower system consist of a lowerable one square or ring-like body with six or four strong pillars of the working and living deck carries. In den Tragsäulen oberhalb befindet sich eine Hydraulische-Füllun aus Stickstoff oder Preßluft,die Preßluft wird bei Seegang durch den Wellenkompreßor(Schwimmern)erzeugt.Die Druckluft wird über Druckinjektore (DUsen)Siehe Fig 5 Hydraulische-Presse-oder Strahler, dadurch entsteht eine Saugwirkung auf die @@@@@@@ Steigrohreoder Druckwasser-Turbine. Nach den Ansprüchen 1 bis 4. In the support columns above there is a hydraulic filling from nitrogen or compressed air, the compressed air is generated by the wave compressor (floats) in rough seas Compressed air is supplied via pressure injectors (DUsen) See Fig. 5 Hydraulic press or jet, this creates a suction effect on the riser or pressurized water turbine. According to claims 1 to 4.
DE19772738435 1977-08-19 1977-08-19 Power generator using solar and wind energy conversion - has parabolic mirror contg. bladed rotor with appropriate air nozzles Withdrawn DE2738435A1 (en)

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Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR2451654A1 (en) * 1979-03-16 1980-10-10 Ribette Rene Power station utilising solar panels - is built on marine raft and uses solar and lunar energy and tidal power
DE3117836A1 (en) * 1980-05-13 1982-03-04 Vilati Villamos Automatika Fövállalkozó és Gyártó Vállalat, Budapest SOLAR WHEEL
FR2547029A1 (en) * 1983-06-02 1984-12-07 Nouyrigat Marcel Methods of harnessing solar and wind energies
DE3346773A1 (en) * 1983-12-23 1985-07-04 M.A.N. Maschinenfabrik Augsburg-Nürnberg AG, 8000 München Method and device for operating a wind-solar energy utilisation system
EP0307517A1 (en) * 1987-09-18 1989-03-22 Zakaria Kalil Doleh System for generating electrical energy
WO2022015270A1 (en) * 2020-07-16 2022-01-20 Ozturk Halil Hybrid electricity generation with solar concentrating and wind power

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR2451654A1 (en) * 1979-03-16 1980-10-10 Ribette Rene Power station utilising solar panels - is built on marine raft and uses solar and lunar energy and tidal power
DE3117836A1 (en) * 1980-05-13 1982-03-04 Vilati Villamos Automatika Fövállalkozó és Gyártó Vállalat, Budapest SOLAR WHEEL
FR2547029A1 (en) * 1983-06-02 1984-12-07 Nouyrigat Marcel Methods of harnessing solar and wind energies
DE3346773A1 (en) * 1983-12-23 1985-07-04 M.A.N. Maschinenfabrik Augsburg-Nürnberg AG, 8000 München Method and device for operating a wind-solar energy utilisation system
EP0307517A1 (en) * 1987-09-18 1989-03-22 Zakaria Kalil Doleh System for generating electrical energy
WO2022015270A1 (en) * 2020-07-16 2022-01-20 Ozturk Halil Hybrid electricity generation with solar concentrating and wind power

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