TR202019771A2 - A COOLER WITH STEP PLATFORM AND AIR DIRECTION PLATE TO ACHIEVE EFFICIENT COOLING - Google Patents

A COOLER WITH STEP PLATFORM AND AIR DIRECTION PLATE TO ACHIEVE EFFICIENT COOLING

Info

Publication number
TR202019771A2
TR202019771A2 TR2020/19771A TR202019771A TR202019771A2 TR 202019771 A2 TR202019771 A2 TR 202019771A2 TR 2020/19771 A TR2020/19771 A TR 2020/19771A TR 202019771 A TR202019771 A TR 202019771A TR 202019771 A2 TR202019771 A2 TR 202019771A2
Authority
TR
Turkey
Prior art keywords
condenser
air
cooler
group
air flow
Prior art date
Application number
TR2020/19771A
Other languages
Turkish (tr)
Inventor
Semi̇h Önal Talat
Original Assignee
Talat Semih Oenal
Semi̇h Önal Talat
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Talat Semih Oenal, Semi̇h Önal Talat filed Critical Talat Semih Oenal
Priority to TR2020/19771A priority Critical patent/TR202019771A2/en
Priority to PCT/TR2021/050338 priority patent/WO2022119520A1/en
Publication of TR202019771A2 publication Critical patent/TR202019771A2/en

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D23/00General constructional features
    • F25D23/003General constructional features for cooling refrigerating machinery
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25BREFRIGERATION MACHINES, PLANTS OR SYSTEMS; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS
    • F25B39/00Evaporators; Condensers
    • F25B39/04Condensers
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D2323/00General constructional features not provided for in other groups of this subclass
    • F25D2323/002Details for cooling refrigerating machinery
    • F25D2323/0026Details for cooling refrigerating machinery characterised by the incoming air flow
    • F25D2323/00267Details for cooling refrigerating machinery characterised by the incoming air flow through the side
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D2323/00General constructional features not provided for in other groups of this subclass
    • F25D2323/002Details for cooling refrigerating machinery
    • F25D2323/0027Details for cooling refrigerating machinery characterised by the out-flowing air
    • F25D2323/00277Details for cooling refrigerating machinery characterised by the out-flowing air from the side

Landscapes

  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Mechanical Engineering (AREA)
  • Thermal Sciences (AREA)
  • General Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Other Air-Conditioning Systems (AREA)
  • Cold Air Circulating Systems And Constructional Details In Refrigerators (AREA)
  • Devices That Are Associated With Refrigeration Equipment (AREA)

Abstract

Buluş, soğutucularda (1) verimli soğutmayı sağlamak üzere; - en az bir hava emiş mazgalı (1.1), en az bir hava çıkış mazgalı (1.2), en az bir kondenser (1.4), en az bir pervane (1.5), en az bir tahrik sağlayıcı (1.6), üzerine bahsedilen pervane (1.5) konumlandırılan ve standart devirdeki söz konusu pervanenin (1.5) oluşturduğu hava akım miktarının kondenser (1.4) üzerine düşmesini artırmak için pervanenin (1.5) orta aksının kondenser (1.4) grubunun tam ortasına gelmesini sağlayacak şekilde söz konusu konumlandırılmayı sağlayan, bir alt kademesini bir üst kademesine bağlayan eğimli kısmı sayesinde havayı sıkıştırarak kondenser (1.4) bölümüne yönlendiren ve iletilmesini sağlayan en az bir kademeli platform (1.3) ve/veya kondenser (1.4) grubunun çok ısındığı ve hava akış hızının yeterli olmadığı zamanlarda ise havanın daha da sıkıştırılmasını sağlayan ve hava akışını kondensere (1.4) fazla miktarda verecek şekilde ayarlanabilen en az bir hava yönlendirici plaka (1.8) içeren bir soğutucu (1) ile ilgilidir.The invention is to provide efficient cooling in coolers (1); - at least one air intake grille (1.1), at least one air outlet grille (1.2), at least one condenser (1.4), at least one propeller (1.5), at least one propulsion provider (1.6), on which said propeller ( 1.5). At least one stage platform (1.3) and/or condenser (1.4) group that compresses the air and directs it to the condenser (1.4) section by compressing it thanks to the inclined part connecting it to the condenser stage and/or condenser (1.4) group, which provides further compression of the air and provides air flow when the air flow rate is not sufficient. It relates to a cooler (1) comprising at least one air baffle plate (1.8) which can be adjusted to deliver a large amount to the condenser (1.4).

Description

TARIFNAME VERIMLI SOGUTMAYI GERÇEKLESTIRMEK IÇIN KADEMELI PLATFORM VE HAVA YÖNLENDIRICI PLAKA IÇEREN BIR SOGUTUCU Teknik Alan Bulus, verimli sogutmayi gerçeklestirmek için kademeli platform ve hava yönlendirici plaka içeren bir sogutucu ile ilgilidir. Önceki Teknik Teknigin bilinen durumunda farkli alanlarda kullanilabilen çesitli sogutma teknikleri mevcuttur. Bunlar genellikle; eriyik teskiliyle sogutma, gazlarin genislemesi ile sogutma, termoelektrik sogutma, vortex tüpüyle sogutma, manyetik sogutma, para manyetik sogutma, nemlendirmeli sogutma, absorbsiyonlu sogutma, vakumla sogutma, buhar enjektörlü sogutma ve gaz sikistirmali sogutmadir. Günümüzde yaygin olarak evlerde ve marketlerde kullanilan sogutucu ve dondurucu klimalarda gaz sikistirmali sogutma çevrimi kullanilmaktadir. Bu teknikte agirlikli olarak sogutucu gazin bir motor vasitasi ile sikistirilarak özel bir borulama sistemi içerisinde dolastirilmasi, bu dolasim esnasinda sivi-gaz fazlari arasindaki geçisten elde edilen enerjinin sogutmada kullanilmasi prensibi ile çalismaktadir. Yaygin olarak kullanilan gaz sikistirmali sogutma çevrimlerinde bir sogutucu akiskan bulunmaktadir. Düsük basinçta gaz halinde, yüksek basinçta ise sivi halindedir. Bir motor vasitasi ile bu akiskan yüksek basinçtan düsük basinca ittirilmektedir. Akiskanin yüksek basinçta bulundugu borulama grubuna kondenser, düsük basinçta bulundugu borulama grubuna ise evaparatör denilmektedir. Kondenser içerisindeki akiskan sivi sicak oldugundan sogutulacak kabinin disinda, evaparatör içerisindeki akiskan sivi soguk oldugundan sogutulacak kabinin içerisinde bulunmaktadir. Kondenser grubu kabinin disinda olsa da yeterli derecede havalanmamakta bu da sistemin sogutma verimini düsürmektedir. Teknigin bilinen durumunda kondenser üzerindeki isinin bertaraf edilmesi için borularin olabildigince açilmasi ve yayilarak hava ile temas etmesi saglanmaya çalisilmaktadir. Buzdolaplarinda kullanilan sistemlerde buzdolaplarinin arkasi tamamen bu borular ile kapli olabilmektedir. Bu sistem ile borularin üzerindeki isi serbest bir sekilde ortama verilse de yeterli bir havalandirma için iyi bir yöntem olmamaktadir. Teknigin bilinen durumunda yaygin olarak kullanilan diger yöntemlerden birisi de kondenser borularin gruplandirilarak bir araya getirilmesi ile dis ortamla iliski olan ve daha iyi havalanan bir hazne içerisine yerlestirilmesidir. Borularin bir arada olmasindan dolayi daha az görünmesi estetik açidan daha iyi bir yöntem olsa da havalandirilmasinda ve isiyi yaymakta çözümler yetersiz kalmaktadir. Bu yöntemde kondenser grubundaki isiyi yaymak için bazi sistemlerde pervane kullanilsa da, pervaneler havayi kondensere tam olarak iletememektedir. Bu da havanin verimsiz bir sekilde kullanilmasina sebep oldugundan iyi bir havalandirma yöntemi olmamaktadir. Mevcut teknikte kullanilan diger bir havalandirma yöntemi ise; isiyi almak için kondenser grubu su dolu bir kap içerisine yerlestirilmektedir. Bu yöntem pratik bir sekilde kullanmaya elverisli degildir. Bu sistemin yeterli olmadigi durumlarda ise, kondenser grubu hem su dolu kap içerisine yerlestirilmekte hem de pervaneye maruz kalmaktadir. Yukarida yaygin olarak kullanilan tekniklerde kondenserleri havalandirmak için ya estetik bir görüntüden uzaklasilmakta ya yetersiz kalmakta ya da mevcut teknikteki sistemlerin bir araya getirilmesine ihtiyaç duymaktadir. Bu da maliyeti arttirmasi ve çok fazla enerji kullanilmasi anlamina gelmektedir. Teknigin bir diger bilinen durumunda kondenser üzerindeki isiyi ve pervanenin debisini ölçmek, ayni zamanda bu verilere göre pervane hizini arttirmak ya da düsürmek için maliyeti yüksek olan elektronik sistemler ve yazilimlar bulunmaktadir. Ancak bu sistem ve yazilimlar da sogutucularin her alanda kullanilmasini zorlastirmaktadir. Teknigin bilinen durumunda yer almayan ve söz konusu dezavantajlari ortadan kaldiracak yeni sistemlerin gelistirilmesine ihtiyaç duyulmaktadir. Bulusun Kisa Açiklamasi: Bulusun amaci, verimli sogutmayi gerçeklestirmek için kademeli platform ve hava yönlendirici plaka içeren bir sogutucu gerçeklestirmektir. Söz konusu amaci gerçeklestirmek için, bulus konusu sogutucuda kullanilan standart devirdeki pervanenin olusturdugu hava akimi, ayarlanabilir bir hava yönlendirici plaka ile hizlandirilarak ve/veya pervanenin orta aksinin kondanser grubunun tam ortasina gelmesini saglayan kademeli platform üzerine konumlandirilan pervane ile pervaneden çikan hava akiminin kondanser paketinin üzerinden en az kayip ile geçirilmesi saglanmaktadir. Böylece söz konusu yapi ve/veya yapilar ile kondanserin isi transferi verimi arttirmaktadir. Böylece maliyeti az olan ayni zamanda hem ticari faaliyetlerde hem de ev tipi kullanima uygulanabilen sistem bulus ile saglanmistir. Sekillerin Açiklamasi Sekil 1. Önceki teknikte kademesiz platform kullanildiginda ve bulus konusu sogutucuda kademeli platform kullanildiginda kondansere ulasan hava akiminin karsilastirmali önden temsili görünümdür. Sekil 2. Bulus konusu sogutucunun sirayla önden ve arkadan perspektif üstten temsili görünümüdür. Sekil 3. Normal debi durumunda ve sadece kademeli platform olmasi durumunda bulus konusu Sekil 4. Hem kademeli platform hem de hava yönlendirici plaka kullanilmasi durumunda bulus konusu sogutucunun önden görünümüdür. Sekil 5. Bulus konusu sogutucunun bir diger uygulamasinda içerdigi hava yönlendirici plakanin bir baglanti elemani kullanilarak manuel ayarlandigi sogutucu için temsili genel görünümdür. Sekil 6. Bulus konusu sogutucunun bir diger uygulamasinda içerdigi hava yönlendirici plakanin bir tahrik elemani kullanilarak otomatik ayarlandigi sogutucu için temsili genel görünümdür. Sekillerdeki Referanslarin Aciklanmasi Bulusun daha iyi anlasilabilmesi için sekillerdeki numaralarin karsiligi asagida verilmistir: 1. Sogutucu 1.1 Hava Emis Mazgali 1.2 Hava Çikis Mazgali 1.3 Kademeli Platform 1.4 Kondenser 1.5 Pervane 1.6, 1.7 Tahrik Saglayici 1.8 Hava yönlendirici plaka 1.9 Termostat Bulusun Detayli Açiklamasi: Sogutucularda (l) verimli sogutmayi saglamak üzere bulus konusu sogutucu (1) bir uygulamada, en az bir hava emis mazgali (1.1), en az bir hava çikis mazgali (1.2), en az bir kademeli platform (1.3), en az bir kondenser (1.4), en az bir pervane (1.5), en az bir tahrik saglayici (1.6), en az bir hava yönlendirici plaka (1.8) içermektedir. Bulusun bir diger uygulamasinda sogutucu (1); kondenserin (1.4) isisini ölçmeye yarayan en az bir termostat (1.9) ve kondenserin (1.4) isisina göre hava akisini hizlandirip yavaslatan ayni zamanda sogutucuya (1) giren havanin yönünü kondensere (1.4) dogru hava yönlendirici plakayi (1.8) ayarlayarak saglayan bir diger tahrik saglayici (1.7) içermektedir. Bulus konusu sogutucu (1); üzerine en az bir pervane (1.5) konumlandirilan ve standart devirdeki söz konusu pervanenin (1.5) olusturdugu hava akim miktarinin kondenser (1.4) üzerine düsmesini artirmak için pervanenin (1.5) orta aksinin kondenser (1.4) grubunun tam ortasina gelmesini saglayacak sekilde söz konusu konumlandirilmayi saglayan, bir alt kademesini bir üst kademesine baglayan egimli kismi sayesinde havayi sikistirarak kondenser (1 .4) bölümüne yönlendiren ve iletilmesini saglayan kademeli platform (1.3) ve/veya hava akis hizinin yeterli olmadigi zamanlarda ise havanin daha da sikistirilmasini saglayan ve hava akisini kondensere (1.4) fazla miktarda verecek sekilde ayarlanabilen bir hava yönlendirici plaka (1.8) içermektedir. Böylece pervaneden (1.5) çikan hava akiminin kondenser (1.4) paketinin üzerinden en az kayip ile geçirilmesi saglanmaktadir. Ayrica bulus konusu sogutucunun (1) içerdigi kademeli platform (1.3) ve hava yönlendirici plaka (1.8) ile; daha çok havanin kondenser (1.4) içerisinden geçmesi en az kayip ile saglanmaktadir. Ayrica kondenserlerin (1.4) daha iyi havalandirilmasi saglanarak verimli sogutma elde edilmektedir. Böylece sogutucunun (1) içerdigi kademeli platform (1.3); hava emis mazgallarindan (1.1) giris yapan havanin kontrollü bir sekilde kondenser (1 .4) içerisinden geçmesi için kondenser (1.4) grubunun merkezine gelecek sekilde pervanenin (1.5) konumunun ayarlanmasini saglamaktadir. Bu sayede pervanenin (1.5) aksi kondenser (1.4) merkezine geldiginden hava kaybi çok az olacaktir ve sogutucu (l) verimi artacaktir. Kondenser (1.4) grubunun çok isindigi ve havalandirmanin yeterli olmadigi durumlarda ise sogutucunun (1) içerdigi hava yönlendirici plaka (1.8) hava akisinin kontrol edilmesini saglamaktadir. Hava yönlendirici plaka (1.8) asagi dogru açilacagindan sogutucu (l) içerisindeki alan daralacak ve hava emis mazgallarindan (1.1) giren hava pervaneden (1.5) geçtiginde daha da hizlanmak durumunda kalacagindan kondenser (1.4) gmbu daha iyi havalanmaya baslayacaktir. Bulusun uygulamalarina göre hava yönlendirici plaka (1.8) manuel ve/veya bir tahrik saglayici (1.7) ile otomatik ve pratik bir sekilde ayarlanabilmektedir. Sogutucunun (1) içerdigi kademeli platform (1.3) ve hava yönlendirici plaka (1.8) ile; sogutucu (1) veriminin arttirilmasi saglanmaktadir. Böylece bulus konusu sogutucunun (1) maliyeti azalmakta ayni zamanda hem ticari faaliyetlerde hem de ev tipi kullanima uygulanabilmektedir. Bulusun sanavive uygulanmasi: Bulus konusu sogutucu (1), hem ticari hem de ev tipi sogutucularda (1) kullanilmak üzere sanayiye uygulanabilir niteliktedir. Bulus yukaridaki açiklamalar ile sinirli olmayip, teknikte uzman bir kisi kolaylikla bulusun farkli uygulamalarini ortaya koyabilir. Bunlar bulusun istemler ile talep edilen koruma kapsaminda degerlendirilmelidir. TR TR TR TR TR DESCRIPTION A COOLER CONTAINING A STAGED PLATFORM AND AIR DIRECTOR PLATE TO REALIZE EFFICIENT COOLING Technical Field The invention relates to a cooler containing a stepped platform and air guide plate to realize efficient cooling. Prior Art In the state of the art, there are various cooling techniques that can be used in different areas. These are generally; cooling by melt formation, cooling by expansion of gases, thermoelectric cooling, vortex tube cooling, magnetic cooling, paramagnetic cooling, humidification cooling, absorption cooling, vacuum cooling, vapor injector cooling and gas compression cooling. Today, gas compression cooling cycle is used in refrigerators and freezers that are widely used in homes and markets. This technique mainly works on the principle of compressing the refrigerant gas by a motor and circulating it in a special piping system, and using the energy obtained from the transition between liquid-gas phases during this circulation for cooling. Commonly used gas compression refrigeration cycles include a refrigerant. It is in gaseous form at low pressure and in liquid form at high pressure. This fluid is pushed from high pressure to low pressure by a motor. The piping group where the fluid is at high pressure is called the condenser, and the piping group where the fluid is at low pressure is called the evaporator. Since the fluid in the condenser is hot, it is outside the cabinet to be cooled, and since the fluid in the evaporator is cold, it is inside the cabinet to be cooled. Even though the condenser group is outside the cabin, it is not ventilated sufficiently, which reduces the cooling efficiency of the system. In the known state of the technique, in order to eliminate the heat on the condenser, the pipes are opened as much as possible and spread out so that they come into contact with the air. In the systems used in refrigerators, the back of the refrigerators may be completely covered with these pipes. Although this system allows the heat on the pipes to be released freely to the environment, it is not a good method for adequate ventilation. One of the other methods commonly used in the state of the art is to group the condenser pipes together and place them in a chamber that is in contact with the external environment and is better ventilated. Although it is a better method in terms of aesthetics because the pipes are less visible due to being together, the solutions are inadequate in ventilation and heat dissipation. In this method, although fans are used in some systems to spread the heat in the condenser group, the fans cannot fully transmit the air to the condenser. This is not a good ventilation method as it causes air to be used inefficiently. Another ventilation method used in the current technique is; To absorb the heat, the condenser group is placed in a container filled with water. This method is not practical to use. In cases where this system is not sufficient, the condenser group is placed in a water-filled container and is exposed to the propeller. In the techniques commonly used above, in order to ventilate the condensers, they either fall away from an aesthetic appearance, are insufficient, or require the combination of existing technical systems. This means that it increases the cost and uses a lot of energy. In another well-known state of the technique, there are high-cost electronic systems and software to measure the temperature on the condenser and the flow rate of the fan, as well as to increase or decrease the fan speed according to this data. However, these systems and software make it difficult to use coolers in all areas. There is a need to develop new systems that are not included in the known state of the art and will eliminate the disadvantages in question. Brief Description of the Invention: The purpose of the invention is to realize a cooler containing a stepped platform and air guiding plate to achieve efficient cooling. In order to achieve the purpose in question, the air flow created by the standard speed fan used in the cooler of the invention is accelerated by an adjustable air guide plate and/or the fan is positioned on a stepped platform that ensures that the middle axis of the fan comes to the middle of the condenser group, and the air flow coming out of the fan is maximized over the condenser package. It is ensured that it passes with little loss. Thus, the heat transfer efficiency of the condenser with the structure and/or structures in question increases. Thus, a system that is low in cost and can be applied to both commercial activities and home use has been provided with the invention. Explanation of Figures Figure 1. is a comparative front view of the air flow reaching the condenser when a stepless platform is used in the previous technique and when a stepped platform is used in the cooler of the invention. Figure 2. Representative top view of the cooler that is the subject of the invention, from the front and back respectively. Figure 3. In case of normal flow rate and in case of only gradual platform, Figure 4. Front view of the inventive cooler in case of using both stepped platform and air diverter plate. Figure 5. In another application of the cooler subject to the invention, it is a representative general view of the cooler in which the air guide plate is adjusted manually using a fastener. Figure 6. In another application of the cooler subject to the invention, it is a representative general view of the cooler in which the air guiding plate is automatically adjusted using a drive element. Explanation of References in the Figures For a better understanding of the invention, the corresponding numbers in the figures are given below: 1. Cooler 1.1 Air Intake Grille 1.2 Air Outlet Grille 1.3 Staged Platform 1.4 Condenser 1.5 Propeller 1.6, 1.7 Drive Provider 1.8 Air guide plate 1.9 Thermostat Find Details li Description: In coolers (l ) In order to provide efficient cooling, the cooler (1) of the present invention is equipped with at least one air intake grille (1.1), at least one air outlet grille (1.2), at least one stepped platform (1.3), at least one condenser (1.4). It contains at least one propeller (1.5), at least one drive (1.6), and at least one air guide plate (1.8). In another embodiment of the invention, the cooler (1); At least one thermostat (1.9) used to measure the temperature of the condenser (1.4) and another drive that accelerates and slows down the air flow according to the temperature of the condenser (1.4) and also ensures the direction of the air entering the cooler (1) by adjusting the air guiding plate (1.8) towards the condenser (1.4). Contains provider (1.7). The subject of the invention is the cooler (1); At least one propeller (1.5) is positioned on it and ensures that the middle axis of the propeller (1.5) is positioned in the middle of the condenser (1.4) group in order to increase the amount of air flow created by the said propeller (1.5) at standard speed falling on the condenser (1.4). The stepped platform (1.3), which directs and transmits the air to the condenser (1.4) section by compressing it, thanks to its inclined part connecting one lower stage to the upper stage, and/or when the air flow rate is not sufficient, it provides further compression of the air and directs the air flow to the condenser (1.4). ) contains an air diverter plate (1.8) that can be adjusted to provide a greater amount of air. Thus, the air flow coming out of the impeller (1.5) is ensured to pass over the condenser (1.4) package with minimum loss. In addition, with the stepped platform (1.3) and air guiding plate (1.8) included in the cooler (1) of the invention; More air is allowed to pass through the condenser (1.4) with minimal loss. In addition, efficient cooling is achieved by providing better ventilation of the condensers (1.4). Thus, the stepped platform (1.3) contained in the cooler (1); It enables the position of the impeller (1.5) to be adjusted to the center of the condenser (1.4) group so that the air entering from the air suction grilles (1.1) passes through the condenser (1.4) in a controlled manner. In this way, since the opposite side of the impeller (1.5) comes to the center of the condenser (1.4), air loss will be very low and the cooler (1) efficiency will increase. In cases where the condenser (1.4) group gets too hot and ventilation is not sufficient, the air guide plate (1.8) contained in the cooler (1) allows the air flow to be controlled. Since the air guiding plate (1.8) will open downwards, the space inside the cooler (1) will narrow and the condenser (1.4) will begin to ventilate better as the air entering from the air intake grilles (1.1) will have to accelerate even more when it passes through the fan (1.5). According to the applications of the invention, the air guide plate (1.8) can be adjusted manually and/or automatically and practically with a drive (1.7). With the stepped platform (1.3) and air guiding plate (1.8) included in the cooler (1); The efficiency of the cooler (1) is increased. Thus, the cost of the inventive cooler (1) is reduced and at the same time it can be applied to both commercial activities and home use. Industrial application of the invention: The cooler (1) of the invention is applicable to industry for use in both commercial and household type coolers (1). The invention is not limited to the above explanations, and a person skilled in the art can easily reveal different applications of the invention. These should be evaluated within the scope of the protection requested by the claims of the invention. TR TR TR TR TR

Claims (1)

1.ISTEMLER Sogutucularda (l) verimli sogutmayi saglamak üzere; en az bir hava emis mazgali (1.1), en az bir hava çikis mazgali (1.2), en az bir kondenser (1.4), en az bir pervane (1.5), en az bir tahrik saglayici (1.6), üzerine bahsedilen pervane (1.5) konumlandirilan ve standart devirdeki söz konusu pervanenin (1.5) olusturdugu hava akim miktarinin kondenser (1.4) üzerine düsmesini artirmak için pervanenin (1.5) orta aksinin kondanser (1.4) grubunun tam ortasina gelmesini saglayacak sekilde söz konusu konumlandirilmayi saglayan, bir alt kademesini bir üst kademesine baglayan egimli kismi sayesinde havayi sikistirarak kondenser (1.4) bölümüne yönlendiren ve iletilmesini saglayan en az bir kademeli platform (1.3) ve/veya kondenser (1.4) grubunun çok isindigi ve hava akis hizinin yeterli olmadigi zamanlarda ise havanin daha da sikistirilmasini saglayan ve hava akisini kondensere (1.4) fazla miktarda verecek sekilde ayarlanabilen en az bir hava yönlendirici plaka (1.8) içermesiyle karakterize edilen bir sogutucu (1). Kondenserin (1.4) isisini ölçmeye yarayan en az bir termostat (1.9) ve kondenserin (1.4) isisina göre hava akisini hizlandirip yavaslatan ayni zamanda sogutucuya (1) giren havanin yönünü kondensere (1.4) dogru hava yönlendirici plakayi (1.8) ayarlayarak saglayan bir diger tahrik saglayici (1.7) içermesi ile karakterize edilen istem l”deki gibi bir sogutucu Manuel ve/veya bir tahrik saglayici (1.7) ile otomatik ve pratik bir sekilde ayarlanabilen hava yönlendirici plaka (1.8) ile karakterize edilen istem 1 veya istem Zideki gibi bir sogutucu (l). TR TR TR TR TR1. CLAIMS To ensure efficient cooling in coolers (l); at least one air intake grille (1.1), at least one air outlet grille (1.2), at least one condenser (1.4), at least one propeller (1.5), at least one propulsion provider (1.6), above which the said fan (1.5) ) is positioned and in order to increase the amount of air flow created by the said fan (1.5) at standard speed falling on the condenser (1.4), it moves one lower stage to the upper stage in a way that ensures that the middle axis of the fan (1.5) comes to the middle of the condenser (1.4) group. At least one stepped platform (1.3) and/or condenser (1.4) group, which directs and transmits the air to the condenser (1.4) section by compressing it thanks to the inclined part connecting it to the condenser (1.4), provides further compression of the air and directs the air flow to the condenser when the condenser (1.4) group gets too hot and the air flow rate is not sufficient. A cooler (1) characterized by containing at least one air guiding plate (1.8) that can be adjusted to provide a greater amount of air (1.4). At least one thermostat (1.9) used to measure the temperature of the condenser (1.4) and another drive that accelerates and slows down the air flow according to the temperature of the condenser (1.4) and also ensures the direction of the air entering the cooler (1) by adjusting the air guiding plate (1.8) towards the condenser (1.4). A cooler as in claim 1, characterized by containing a provider (1.7). A cooler as in claim 1 or claim 1, characterized by an air guiding plate (1.8) that can be adjusted manually and/or automatically and practically with a drive provider (1.7). l). TR TR TR TR TR
TR2020/19771A 2020-12-04 2020-12-04 A COOLER WITH STEP PLATFORM AND AIR DIRECTION PLATE TO ACHIEVE EFFICIENT COOLING TR202019771A2 (en)

Priority Applications (2)

Application Number Priority Date Filing Date Title
TR2020/19771A TR202019771A2 (en) 2020-12-04 2020-12-04 A COOLER WITH STEP PLATFORM AND AIR DIRECTION PLATE TO ACHIEVE EFFICIENT COOLING
PCT/TR2021/050338 WO2022119520A1 (en) 2020-12-04 2021-04-09 A refrigerator comprising a stepped platform and air diffuser plate to perform efficient refrigeration

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
TR2020/19771A TR202019771A2 (en) 2020-12-04 2020-12-04 A COOLER WITH STEP PLATFORM AND AIR DIRECTION PLATE TO ACHIEVE EFFICIENT COOLING

Publications (1)

Publication Number Publication Date
TR202019771A2 true TR202019771A2 (en) 2022-06-21

Family

ID=81855022

Family Applications (1)

Application Number Title Priority Date Filing Date
TR2020/19771A TR202019771A2 (en) 2020-12-04 2020-12-04 A COOLER WITH STEP PLATFORM AND AIR DIRECTION PLATE TO ACHIEVE EFFICIENT COOLING

Country Status (2)

Country Link
TR (1) TR202019771A2 (en)
WO (1) WO2022119520A1 (en)

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20080103268A (en) * 2007-05-23 2008-11-27 엘지전자 주식회사 A refrigerator comprising a air-blow guide member
WO2016107687A1 (en) * 2014-12-30 2016-07-07 Arcelik Anonim Sirketi A cooling device comprising an air guiding apparatus
WO2016177803A1 (en) * 2015-05-07 2016-11-10 Arcelik Anonim Sirketi A cooling device comprising a condenser cooled by a fan

Also Published As

Publication number Publication date
WO2022119520A1 (en) 2022-06-09

Similar Documents

Publication Publication Date Title
US11519615B2 (en) Outdoor unit of an air conditioner
US20210325058A1 (en) Kitchen Air Conditioning System
WO2018076185A1 (en) Outdoor unit for refrigerating heat pump type frost-free air conditioner
CN207407474U (en) A kind of kitchen air conditioner system with the cooperation of cold-storage cabinet
CN106546045A (en) Cooling device of frequency converter, air conditioning unit and control method
CN104697070A (en) Miniature air conditioner
CN203454455U (en) Three-tube air conditioning system
CN203869124U (en) Air supply module for range hood, and range hood
CN112797518A (en) Air conditioner refrigerator subassembly and air conditioner refrigerator all-in-one
CN104154695A (en) Water chilling unit
TR202019771A2 (en) A COOLER WITH STEP PLATFORM AND AIR DIRECTION PLATE TO ACHIEVE EFFICIENT COOLING
US20140144176A1 (en) Air Conditioner Exhaust Recycling
US3645107A (en) Air-cooled condenser arrangement
CN204115337U (en) A kind of handpiece Water Chilling Units
CN204555087U (en) A kind of mini air conditioner
KR20070087724A (en) Air-conditioner
CN106322590A (en) Heat pipe cooling system for machine room
CN205825560U (en) Airhandling equipment surface cooler surface defrosting mechanism
CN214960805U (en) Outside hanging type integrated cabinet air conditioner
WO2018076189A1 (en) Outdoor unit for frost-free air conditioner
WO2018076311A1 (en) Frost-free air conditioner
WO2018076251A1 (en) Refrigerating heat pump type frost-free air conditioner
WO2018076188A1 (en) Outdoor unit for frost-free air conditioner
WO2018076312A1 (en) Frost-free air conditioner
JP5992735B2 (en) Air conditioner