TR2022004258A2 - WIND ENERGY CYCLE UNIT - Google Patents

WIND ENERGY CYCLE UNIT

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Publication number
TR2022004258A2
TR2022004258A2 TR2022/004258A TR2022004258A TR2022004258A2 TR 2022004258 A2 TR2022004258 A2 TR 2022004258A2 TR 2022/004258 A TR2022/004258 A TR 2022/004258A TR 2022004258 A TR2022004258 A TR 2022004258A TR 2022004258 A2 TR2022004258 A2 TR 2022004258A2
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TR
Turkey
Prior art keywords
wind
energy
power
propeller
wind energy
Prior art date
Application number
TR2022/004258A
Other languages
Turkish (tr)
Inventor
Kentli̇ Koray
Original Assignee
Polar Proje Teknoloji Bilisim Mimarlik Muehendislik Ve Ticaret Anonim Sirketi
Polar Proje Teknoloji̇ Bi̇li̇şi̇m Mi̇marlik Mühendi̇sli̇k Ve Ti̇caret Anoni̇m Şi̇rketi̇
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Application filed by Polar Proje Teknoloji Bilisim Mimarlik Muehendislik Ve Ticaret Anonim Sirketi, Polar Proje Teknoloji̇ Bi̇li̇şi̇m Mi̇marlik Mühendi̇sli̇k Ve Ti̇caret Anoni̇m Şi̇rketi̇ filed Critical Polar Proje Teknoloji Bilisim Mimarlik Muehendislik Ve Ticaret Anonim Sirketi
Priority to TR2022/004258A priority Critical patent/TR2022004258A2/en
Priority to PCT/TR2022/050340 priority patent/WO2023182955A1/en
Publication of TR2022004258A2 publication Critical patent/TR2022004258A2/en

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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
    • F03D1/00Wind motors with rotation axis substantially parallel to the air flow entering the rotor 
    • F03D1/02Wind motors with rotation axis substantially parallel to the air flow entering the rotor  having a plurality of rotors
    • 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
    • F03D1/00Wind motors with rotation axis substantially parallel to the air flow entering the rotor 
    • F03D1/04Wind motors with rotation axis substantially parallel to the air flow entering the rotor  having stationary wind-guiding means, e.g. with shrouds or channels
    • F03D1/044Convergent divergent structures, e.g. venturis
    • 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)
  • Life Sciences & Earth Sciences (AREA)
  • Sustainable Development (AREA)
  • Sustainable Energy (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Wind Motors (AREA)

Abstract

Buluş rüzgâr enerjisiyle çalışan, kinetik enerjiyi mekanik enerjiye dönüştürerek topladıktan sonra ürünün kullanım amacına göre elektrik jeneratörü (alternatör), hidrolik ve pnömatik(hava) pompa gibi güç çevirici (7) araç ya da sistemler kullanılarak ihtiyaç duyulan enerji dönüşümünü sağlayan rüzgâr türbinleriyle ilgilidir.Buluşun her bir üniteden topladığı mekanik enerjiyi tek bir noktada birleştirerek bütünleşik güç elde etmesi sayesinde enerji üretiminde verimlilik artmaktadır.The invention relates to wind turbines that work with wind energy and that, after collecting kinetic energy by converting it into mechanical energy, provide the required energy conversion by using power converter (7) tools or systems such as electric generator (alternator), hydraulic and pneumatic (air) pump, depending on the intended use of the product. By combining the mechanical energy collected from each unit in a single point, the efficiency in energy production increases, thanks to which it obtains integrated power.

Description

TARIFNAME Teknik Alan Bulus,rüzgârin kinetik enerjisinin mekanik enerjiye dönüstürülerek hasadindan sonra bulusun kullanim amacina uygun biçimde elektrik jeneratörü (alternatör) ile elektrik gücüne, hidrolik veya pnömatik (hava)p0mpa gibi güç dönüstürücü araçlar ya da sistemler kullanilarak mekanik enerjiye dönüstürmeye,saklamaya ve talebe göre kullanima sunulmasini saglayan rüzgâr türbinleriyle ilgilidir. Bulusun her bir üniteden topladigi mekanik enerjiyi tek bir noktada birlestirerek bütünlesik güç elde etmesi sayesinde enerji dönüsümünde verimlilik artmakta, denetim kolayligi ve basitligi saglanmaktadir.. Önceki Teknik Günümüzdeelektrik enerjisi üretmek amaciyla kullanilan; farkli özelliklere sahip yatay, dikey, çoklu yapiya sahip ve tekli yapiya sahip çesitli rüzgâr türbinleri bulunmaktadir. Mevcut rüzgâr türbinlerinde rüzgâr etkisiyle dönerek enerji Üreten kisim olan pervane gövdelerininher birinde güç dönüstürücü bulunmaktadir ve kinetik enerji her türbinde ayri ayri elektrik enerjisine dönüstürülmektedir. Bu nedenle hem toplam verim düsmekte ve maliyet artmaktahem de birim güce karsilik gelen arazi veya zemin ihtiyaci artmaktadir.Bu baglamda, bahsedilen rüzgâr türbinlerinde,türbin kanatlari çalisirken yakininda dizili bulunan diger türbinleri olumsuz biçimde etkilediginden, yatay ve dikey olarak uzak yerlere yerlestirilmek zorundadirlar. Bu sebeple çok büyük alan kullanimi vardir.GürüItü konusunda da olumsuzluklar yasa nabilmektedir. Bulusun Açiklamasi Bu bulusun amaçlarina ulasmak için gerçeklestirilenrüzgâr enerjisi çevrim ünitesiekli sekillerde gösterilmistir. Bu sekillerden; Sekil-1Bulus konusu rüzgâr enerjisi çevrim ünitesinin önden bir görünümüdür. Sekil-2 Bulus konusu rüzgâr enerjisi çevrim ünitesinin perspektif bir görünümüdür. Sekil-3 Bulus konusu rüzgâr enerjisi çevrim ünitesinin tek bir parçasinin önden görünümüdür. Sekil-4 Bulus konusu rüzgâr enerjisi çevrim ünitesinin ölçeklenmis bir diger önden görünümüdür. Bulus konusu,rüzgâr enerjisi çevrim ünitesini olusturan parçalar ekli sekillerde asagidaki gibi numaralandirilmistir: 1- Rüzgâr Enerjisi Çevrim Ünitesi 2- Pervane 3- PervaneGövdesi 4- Kaset - Çerçeve Aktarim Elemani Güç Çevirici Bulus konusurüzgâr enerjisi çevrim ünitesi (1),- Pervane gövdesinde (3) bulunan tercihe bagli olarakhatve (pitch) kontrol mekanizmalari ile kanat açisi rüzgâr hizina göre ayarlanabilen veya hatvekontrol mekanizmasi bulunmayan ve kanat açisi rüzgâr hizina göre ayarlanamayan fakat hatve açisi yöredeki rüzgar hiz ve yön histogramina en uygun seçili (optimum) pervane (2), Her bir pervanenin ürettigi dönü, dönüs hizi ve mekanik gücü, mekanik veya hidrolik veya pnömatik (hava) yöntemleri ile toplanarak tek bir çikista elde edilen gücü daha önceden belirlenen seçime bagli olarak aktaran pervane gövdesi (3), Çerçevenin (5), pervanenin (2) ve pervane gövdesinin (3) baglandigi yapi olan, geçme veya baglanti aparatlariyla birbirine baglanacak sekilde modüler yapidaki statik yapiya sahip en az bir adet kaset (4), Pervane (2) ve pervane gövdesiyle (3) fiziksel temasi bulunmayan, statik olarak kasete (4) monte edilen, pervanelerin (2) yan yana çalisabilmesineimkân tanimakla beraber ses olusumunu azaltmayi saglayan,çalkanti (türbülans) etkisini aerodinamik ve akustik açidan azaltabilençerçeve (5), Pervanelerden (2) aldigi dönü ve mekanik gücü güç aktarim mekanizmasi sayesinde toplayarak en son çikisinin güç çeviriciye (7) baglandigi, modüler yapiya sahip olan, aktarim elemani (6), Güç çeviricive elektronik aksam tamami ile kapali ve anti-manyetik ve anti-gürültülü kafes içerisinde ve yerde (veya yer altinda) oldugu için çevreye olasi elektromanyetik etkinin sifira inme imkani vardir. Mevcut türbinlerde alternatör kulede oldugundan elektromanyetik etki çok olabilmektedir. Ayrica kuledeki (nacelle) yangin olasiligina aninda müdahale neredeyse imkansizdir. Bu tür birçok türbin yanginlari Iiteratüre geçmistir ve müdahale edilememistir. Bu bulusta ise türbin millerine bagli ortamlarda yangin çikaracak, elektrik arki olusturacak hiçbir eleman yoktur. Bu tür olasiliklar yalitimli ve yerdeki kafes içerisindedir ve otomatik yangin söndürücülerle aninda ve yerinde söndürülebilir. Türbinlere ise hiçbir zarar gelmez. Mekanik enerjiden elektrik enerjisinin üretildigi üreteç ya da kullanim amacina göre hava veya hidrolik pompa olarak kullanildigi yer olan, aktarim elemanlari (6) araciligiyla rüzgâr enerjisinden hasat edilen mekanik enerjinin toplanarak aktarildigi ve en son elektrik enerjisine ya da hidrolik veya hava pompasina dönüstürüldügü böylece daha çok verim elde edilmesini saglayan, bütünlesik güç kullanan bir adet güç çevirici (7), Içermektedir. Pervane gövdesinde (3) bulunan tercihe bagli olarak hatvekontrol mekanizmalari ile kanat açisi rüzgâr hizina göre ayarlanabilen veya hatve kontrol mekanizmasi bulunmayan ve kanat açisi rüzgâr hizina göre ayarlanamayan pervane (2), her bir pervanenin ürettigi dönü, dönüs hizi ve mekanik gücü, mekanik veya hidrolik veya pnömatik (hava) yöntemleri ile toplanarak tek bir çikis elde edilen gücü daha önceden belirlenen seçime bagli olarak aktaran pervane gövdesini (3) içeren ve çerçevenin (5), pervanenin (2) ve pervane gövdesinin (3) baglandigi yapi olan, geçme veya baglanti aparatlariyla birbirine baglanacak sekilde modüler yapidaki statik yapiya sahip en az bir adet kaset (4), pervane (2) ve pervane gövdesiyle (3) fiziksel temasi bulunmayan, statik olarak kasete (4) monte edilen, pervanelerin (2) yan yana çalisabilmesine imkân tanimakla beraber ses olusumunu azaltmayi saglayan, çalkanti (türbülans) etkisini azaltan aerodinamikçerçeve (5), pervanelerden (2) aldigi dönü ve mekanik gücü güç aktarim mekanizmasi sayesinde toplayarak en son çikisinin güç çeviriciye (7) baglandigi, modüler yapiya sahip olan, aktarim elemani (6), mekanik enerjiden elektrik enerjisinin üretildigi üreteç ya da kullanim amacina göre hava veya hidrolik pompa olarak kullanildigi yer olan, aktarim elemanlari (6) araciligiyla rüzgâr enerjisinden hasat edilen mekanik enerjinin toplanarak aktarildigi ve en son elektrik enerjisine ya da hidrolik veya hava pompasina dönüstürüldügü böylece daha çok verim elde edilmesini saglayan, bütünlesik güç kullanan bir adet güç çevirici (7) içermesi ile karakterize edilen rüzgâr enerjisi çevrim ünitesi (1). Bulus konusu rüzgâr enerjisi çevrim ünitesinin (1) bütünlesik güç yapisi sayesinde rüzgârdan elde edilen kinetik enerji, mekanik enerjiye dönüstürüldükten sonra aktarim elemanlari (6) araciligiyla kasetlerle (4) kusatilan pervane gövdelerinden (3) toplanarak tekil güç çeviriciyle (7) elektrik enerjisine ya da hidrolik veya hava pompasina dönüstürülmesi rüzgâr enerjisinden daha çok verim elde edilmesini ayrica daha az malzeme kullanildigi için maliyeti azaltmayi saglamaktadir. Bulus konusurüzgâr enerjisi çevrim ünitesinin (1) sahip oldugu çerçeve (5) sayesinde hem ses olusumu azaltilarak yerlesim yerlerine yakin kullanim imkâni sunmaktadir hem de kanatlarin dönmesiyle olusturdugu hava akimindan diger pervanelerin etkilenmesi engellenerek çalkanti (türbülans) olusumunu azaltmaktadir. Bu sayede birden fazla pervanenin (2) birbirinden etkilenmeden yakin çalisabilmesine olanak vermekle beraber güç eldesinde de artis saglamaktadir. Bulus konusu rüzgâr enerjisi çevrim ünitesinde (1) pervane gövdelerinden (3) toplanan bütünlesik güç tek bir güç çevirici (7) ile istenilen alanda kullanmak üzere elektrik jeneratörü (alternatör), hidrolik ve pnömatik(hava) pompa olarak kullanilabilmektedir. Kasetin (4) disinamonte edilebilen seçenekli koruma izgarasi sayesinde kurulum yerlesim yerlerine yakin yapildigi zaman hem cihazin hem de insanlarin ve hayvanlarin güvenligi saglanmaktadir. Aktarim elemaninin (6) birbirine eklenip çikarilabilir bir yapida olmasi, ihtiyaca göre kurulumu yapilacak olan kasetlere (4) konumlandirilan pervane gövdesi (3) sayisinin arttirilip azaltilmasina, yatay ve dikey konumda imkân tanimaktadir. Mekanik güçten bagimsiz olarak üretilen her noktadaki mekanik gücün farkli aktarim elemanlari (6) saft,mil ya da kablo kullanimi ile kullanilmasi düsünülen aktarim ve üreteçlerin en verimli çalisacaklari hiza ayarlanabilir. Bulus konusu rüzgâr enerjisi çevrim ünitesinin (1)m0düler olmasi sayesinde yerlesim alanina ve yatirim maliyeti tercihlerine göre tekrar ölçeklendirilebilirlik özelligine sahip olmakla birlikte çoklu yapida kullanilabilir olmasi sayesinde alandan tasarruf edilmesini saglamaktadir. Bulus konusu rüzgâr enerjisi çevrim ünitesi (1)faydali gücü modüler yapida dagitik üretmektedir. Özel islem gerektirmeyen, az maliyetli, kolay bulunan parçalardan olusmaktadir. Bu özellikleri nedeni ile yenilenebilir enerji kaynaklarindan her yerde daha kolay ve basitbakimi kolay,parçalardan olusan rüzgar türbinlerinin çevreye ve ekonomiye katkilari hizla yayginlasabilecektir. Rüzgâr enerjisi hesabinda türbin süpürme alaninin yari çapinin karesi ve rüzgâr hizinin küpü ile orantilidir. Yari çap arttikça üretilebilecek güç yari çapin karesi ile artar. Rüzgâr hizi arttikça güç küpü ile artar. Bu iliski her ne kadar tüm mevcut rüzgar türbinleri için geçerli olsa da, geometrik dizilis anlaminda rüzgarin çarptigi birim yüzey alanindaki toplam rüzgar süpürme alani; bulusta belirtilen üniteler (1) birlestirilerek diger türbinlerde elde edilemeyecek kadar genis bir süpürme alani elde edilebilir ve birim yüzey alaninda çok yüksek güç elde edilebilir. Böylelikle,rüzgar türbinlerindeki maksimum verimi simgeleyen Betz yasasina yakinsamak mümkün olmaktadir. Kaset (4) tercihe bagli olarak metal, geri dönüsümlü termo-plastik, firinlanmis tahta ve benzeri malzemelerdenyapilabilmektedir. Çerçeve (5) ise dagitaç (difüzör) mantigiyla da çalisabilmektedir. TR TR TR DESCRIPTION Technical Field The invention consists of converting the kinetic energy of the wind into mechanical energy and then converting it into electrical power with an electrical generator (alternator) in accordance with the intended use of the invention, and converting it into mechanical energy by using power conversion devices or systems such as hydraulic or pneumatic (air) pumps, storing it and according to demand. It is about the wind turbines that make it available for use. Thanks to the invention obtaining integrated power by combining the mechanical energy collected from each unit at a single point, efficiency in energy conversion increases and ease and simplicity of control is provided. Prior Art Today, used to produce electrical energy; There are various wind turbines with different features: horizontal, vertical, multiple structure and single structure. In existing wind turbines, there is a power converter in each of the propeller bodies, which are the parts that produce energy by rotating under the influence of the wind, and kinetic energy is converted into electrical energy separately in each turbine. For this reason, both the total efficiency decreases and the cost increases, and the need for land or ground corresponding to unit power increases. In this context, in the wind turbines mentioned, they have to be placed in distant places horizontally and vertically, as the turbine blades negatively affect the other turbines arranged nearby while operating. For this reason, a very large area is used. Negativity may also occur regarding noise. Description of the Invention The wind energy conversion unit realized to achieve the objectives of this invention is shown in the attached figures. From these shapes; Figure-1 is a front view of the subject wind energy conversion unit. Figure-2 is a perspective view of the wind energy conversion unit that is the subject of the invention. Figure-3 is the front view of a single part of the wind energy conversion unit that is the subject of the invention. Figure-4 is another scaled front view of the wind energy conversion unit that is the subject of the invention. The parts constituting the wind energy conversion unit, which is the subject of the invention, are numbered as follows in the attached figures: 1- Wind Energy Conversion Unit 2- Propeller 3- Propeller Body 4- Cassette - Frame Transfer Element Power Converter The wind energy conversion unit (1), which is the subject of the invention, is located in the propeller body (3). ) Depending on the preference, the blade angle can be adjusted according to the wind speed with pitch control mechanisms or the selected (optimum) propeller (2), which does not have a pitch control mechanism and whose blade angle cannot be adjusted according to the wind speed, but whose pitch angle is most suitable for the wind speed and direction histogram in the region, Each The propeller body (3), which transfers the power obtained at a single output by collecting the rotation, rotation speed and mechanical power produced by the propeller by mechanical, hydraulic or pneumatic (air) methods, depending on the predetermined selection, consists of the frame (5), the propeller (2) and At least one cassette (4) with a modular static structure, which is the structure to which the propeller body (3) is connected, in a way that can be connected to each other with fittings or connection apparatus. It is statically attached to the cassette (4), which has no physical contact with the propeller (2) and the propeller body (3). The mounted frame (5), which allows the propellers (2) to work side by side and reduces the sound generation and reduces the turbulence effect in terms of aerodynamics and acoustics. Since the transmission element (6), which has a modular structure, to which (7) is connected, the power converter and the electronic parts are completely closed and in an anti-magnetic and anti-noise cage and on the ground (or underground), it is possible to reduce the possible electromagnetic effect to the environment to zero. . Since the alternator is in the tower in existing turbines, the electromagnetic effect can be high. In addition, it is almost impossible to intervene immediately in case of fire in the tower (nacelle). Many such turbine fires have been reported in the literature and could not be intervened. In this invention, there are no elements that could cause fire or create an electric arc in the environments connected to the turbine shafts. Such possibilities are insulated and caged on the ground and can be extinguished instantly and on-site with automatic fire extinguishers. No damage will occur to the turbines. It is the generator where electrical energy is produced from mechanical energy or where it is used as an air or hydraulic pump depending on the purpose of use, where the mechanical energy harvested from wind energy is collected and transferred through the transfer elements (6) and finally converted into electrical energy or a hydraulic or air pump, thus providing greater efficiency. It contains a power converter (7) that uses integrated power to achieve power. Depending on the preference in the propeller body (3), the blade angle can be adjusted according to the wind speed with the pitch control mechanisms, or the propeller (2), which does not have a pitch control mechanism and whose blade angle cannot be adjusted according to the wind speed, rotates, rotation speed and mechanical power produced by each propeller, mechanical or hydraulic. It is a structure containing the propeller body (3) that transfers the power obtained by collecting the power to a single output by pneumatic (air) or pneumatic (air) methods, depending on the predetermined selection, and to which the frame (5), the propeller (2) and the propeller body (3) are connected. At least one cassette (4), which has a modular static structure to be connected to each other with its apparatus, has no physical contact with the propeller (2) and the propeller body (3), is statically mounted on the cassette (4), allowing the propellers (2) to work side by side. aerodynamic frame (5), which reduces the effect of noise and turbulence; the transmission element (6), which has a modular structure, where the rotation and mechanical power received from the propellers (2) are collected by the power transmission mechanism, and the final output is connected to the power converter (7). ), where the mechanical energy harvested from wind energy is collected and transferred through the transfer elements (6), which is the generator where electrical energy is produced from mechanical energy, or where it is used as an air or hydraulic pump depending on the purpose of use, and is finally converted into electrical energy or a hydraulic or air pump, thus making it more efficient. The wind energy conversion unit (1) is characterized by containing a power inverter (7) that uses integrated power and provides high efficiency. Thanks to the integrated power structure of the wind energy conversion unit (1) that is the subject of the invention, the kinetic energy obtained from the wind is converted into mechanical energy and then collected from the propeller bodies (3) surrounded by cassettes (4) through the transfer elements (6) and converted into electrical energy or electrical energy with the single power converter (7). Converting it into a hydraulic or air pump enables more efficiency from wind energy and also reduces costs because less material is used. Thanks to the frame (5) of the wind energy conversion unit (1), the invention provides the opportunity to use it close to residential areas by reducing sound generation, and it also reduces the formation of turbulence by preventing other propellers from being affected by the air flow created by the rotation of the blades. In this way, it allows more than one propeller (2) to work closely without being affected by each other, and also provides an increase in power generation. In the wind energy conversion unit (1) of the invention, the integrated power collected from the propeller bodies (3) can be used as an electric generator (alternator), hydraulic and pneumatic (air) pump for use in the desired area with a single power converter (7). Thanks to the optional protection grill that can be mounted outside the cassette (4), the safety of both the device, people and animals is ensured when the installation is made close to residential areas. The fact that the transmission element (6) has a structure that can be added or removed allows the number of propeller bodies (3) positioned in the cassettes (4) to be installed, to be increased or decreased in horizontal and vertical positions, as needed. Independently of the mechanical power, the mechanical power produced at each point can be adjusted to the level where the transmission and generators intended to be used will operate most efficiently by using different transmission elements (6), shafts, shafts or cables. The wind energy conversion unit (1) of the invention has the feature of being scalable according to the residential area and investment cost preferences, thanks to its modularity, and it also saves space thanks to its use in multiple structures. The wind energy conversion unit (1) that is the subject of the invention produces useful power distributed in a modular structure. It consists of low-cost, easily available parts that do not require special processing. Due to these features, the contribution of wind turbines, which are made of simpler, easier-to-maintain parts than renewable energy sources, to the environment and economy will become widespread rapidly. In wind energy calculation, it is proportional to the square of the radius of the turbine sweeping area and the cube of the wind speed. As the radius increases, the power that can be produced increases with the square of the radius. As the wind speed increases, the power cube increases. Although this relationship is valid for all existing wind turbines, in terms of geometric arrangement, the total wind sweep area per unit surface area hit by the wind; By combining the units (1) specified in the invention, a wide sweeping area that cannot be achieved in other turbines can be obtained and very high power can be obtained per unit surface area. Thus, it is possible to converge to Betz's law, which symbolizes the maximum efficiency in wind turbines. The cassette (4) can optionally be made of metal, recycled thermo-plastic, kiln-dried wood and similar materials. The frame (5) can also work with diffuser logic. TR TR TR

TR2022/004258A 2022-03-21 2022-03-21 WIND ENERGY CYCLE UNIT TR2022004258A2 (en)

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TR2022/004258A TR2022004258A2 (en) 2022-03-21 2022-03-21 WIND ENERGY CYCLE UNIT
PCT/TR2022/050340 WO2023182955A1 (en) 2022-03-21 2022-04-15 Wind energy conversion apparatus

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TR2022/004258A TR2022004258A2 (en) 2022-03-21 2022-03-21 WIND ENERGY CYCLE UNIT

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