KR200219142Y1 - air-conditioner - Google Patents
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- KR200219142Y1 KR200219142Y1 KR2020000030378U KR20000030378U KR200219142Y1 KR 200219142 Y1 KR200219142 Y1 KR 200219142Y1 KR 2020000030378 U KR2020000030378 U KR 2020000030378U KR 20000030378 U KR20000030378 U KR 20000030378U KR 200219142 Y1 KR200219142 Y1 KR 200219142Y1
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Abstract
본 고안은 중/고층 빌딩 또는 대형건물에 적용되는 대용량 공기조화기에 관련한 것으로서, 특히 팬과 모터가 직결된 송풍팬을 적용하므로써 기존에 적용되었던 밸트 및 밸트차 등의 동력전달수단이 필요없는 단순구조의 대용량 공기조화기에 관한 것이다.The present invention relates to a large-capacity air conditioner applied to a medium / high-rise building or a large building, and in particular, by applying a blower fan directly connected to a fan and a motor, a simple structure that does not require a power transmission means such as a belt and a belt car that has been conventionally applied. To a large capacity air conditioner.
본 고안의 목적은 기존의 밸트구동방식의 송풍팬을 배제하고, 원심팬과 팬모터가 직결된 송풍팬을 적용한 대용량 공기조화기를 제공하는데 있다.An object of the present invention is to provide a large-capacity air conditioner by applying a blower fan directly connected to a centrifugal fan and a fan motor, excluding the existing belt driving fan.
이를 위한 본 고안은, 실내공기를 흡인하는 흡입유닛(100), 1차 열교환 유닛, 2차 열교환 유닛, 열교환된 기내공기를 실내로 환원하는 배출유닛(200)이 순차 배열된 구성의 대용량 공기조화기에 있어서;The present invention for this purpose, a large-capacity air conditioning of the configuration in which the suction unit 100 for sucking indoor air, the primary heat exchange unit, the secondary heat exchange unit, the discharge unit 200 for reducing the heat exchanged in-flight air to the room in sequence In the group;
상기 흡입유닛(100)과 배출유닛(200)에 내장되는 각 송풍기(110,210)는 원심팬(111,211)과 이를 구동시키는 팬모터(112,212)가 직접 결합된 직결형 송풍기인 것을 특징으로 한다.Each blower (110, 210) built in the suction unit 100 and the discharge unit 200 is characterized in that the direct blower is directly coupled to the centrifugal fan (111,211) and the fan motor (112,212) for driving it.
Description
본 고안은 중/고층 빌딩 또는 대형건물에 적용되는 대용량 공기조화기에 관련한 것으로서, 특히 팬과 모터가 직결된 송풍팬을 적용하므로써 기존에 적용되었던 밸트 및 밸트차 등의 동력전달수단이 필요없는 단순구조의 대용량 공기조화기에 관한 것이다.The present invention relates to a large-capacity air conditioner applied to a medium / high-rise building or a large building, and in particular, by applying a blower fan directly connected to a fan and a motor, a simple structure that does not require a power transmission means such as a belt and a belt car that has been conventionally applied. To a large capacity air conditioner.
통상, 공기조화기는 쾌적한 실내환경을 조성하기 위해 실내로 보내는 공기의 온도, 습도, 기류 및 청결도 등을 조절하여주는 기기로서, 설치장소 및 냉/난방 용량에 따라 소용량 또는 대용량으로 대별되며, 소용량은 가정용으로, 대용량은 빌딩 또는 공장등의 대형건물용으로 사용되고 있다.In general, air conditioners are devices that control the temperature, humidity, airflow, and cleanliness of the air sent to the room to create a comfortable indoor environment. The air conditioners are classified into small or large capacity according to the installation place and cooling / heating capacity. Large households are used for large buildings such as buildings or factories.
이러한 대용량 공기조화기는 실내공기를 강제 흡인하여 고온 또는 저온으로 열교환시킨 후 실내로 다시 환원시키는 반복된 사이클에 의해 냉방 또는 난방을 수행하게 된다.Such a large-capacity air conditioner performs cooling or heating by repeated cycles of forced suction of indoor air, heat exchange to high or low temperature, and reduction back to the room.
도 1은 대용량 공기조화기의 일예를 도시한 구성도이다.1 is a configuration diagram showing an example of a large-capacity air conditioner.
도면에 따르면, 대용량 공기조화기는 유체유동방향을 따라 흡입유닛(1), 1차 열교환 유닛(2), 2차 열교환 유닛(3), 배출유닛(4)이 순차 배열된 구성을 이루고 있다.According to the drawings, the large-capacity air conditioner has a configuration in which the suction unit 1, the primary heat exchange unit 2, the secondary heat exchange unit 3, and the discharge unit 4 are sequentially arranged along the fluid flow direction.
이러한 유닛중 흡입유닛(1)은 실내와 덕트에 의해 연결되며, 케이스(10)의 내부에는 실내공기를 기내로 흡인하는 흡입송풍기(11)가 설치되어 있다. 이때, 상기 흡입송풍기(11)는 원심팬(11a)과, 상기 원심팬(11a)을 구동시켜주는 팬모터(11b)로 이루어져 있으며, 원심팬(11a)과 팬모터(11b)는 밸트(12) 및 밸트차(13)에 의해 연결되어 있다.Among these units, the suction unit 1 is connected to the room by a duct, and a suction blower 11 for sucking indoor air into the inside of the case 10 is installed. At this time, the suction blower 11 is composed of a centrifugal fan 11a and a fan motor 11b for driving the centrifugal fan 11a, and the centrifugal fan 11a and the fan motor 11b are belts 12. ) And the belt car 13 are connected.
그리고, 상기 1차 열교환 유닛(2)은 케이스(20)의 상부 일측에 외기(外氣)가 유입되는 공기유입구(21)와, 내기(內氣)가 배출되는 공기배출구(22)가 각각 형성되어 있으며, 상기 케이스(20)에는 그 내부로 유입되는 공기를 1차로 열교환시켜주는 1차 열교환기(23)가 내장된 구성을 이루고 있다.In addition, the primary heat exchange unit 2 has an air inlet 21 through which outside air is introduced into an upper side of the case 20, and an air outlet 22 through which internal air is discharged, respectively. The case 20 has a configuration in which a primary heat exchanger 23 for primarily heat-exchanging air introduced into the case 20 is incorporated.
그리고, 상기 2차 열교환 유닛(3)은 케이스(30)의 내부 전방에 설치되어 공기중에 포함된 이물질을 여과시켜주는 에어필터(31)와, 상기 에어필터(31)의 후방에 설치되어 공기를 2차로 열교환시켜주는 코일형상의 2차 열교환기(32)로 구성되어 있다.In addition, the secondary heat exchange unit 3 is installed in the front of the inside of the case 30 to filter foreign matter contained in the air, and the air filter 31 is installed in the rear of the air filter 31 It is composed of a coil-shaped secondary heat exchanger 32 for secondary heat exchange.
그리고, 상기 배출유닛(4)은 케이스(40) 상에 건물의 실내와 연통되는 냉기 토출구(41)가 형성되어 있으며, 냉기를 상기 냉기 토출구(41)를 향해 강제로 배출되도록 하는 토출송풍기(42)로 구성되어 있다. 이때, 상기 토출송풍기(42)는 원심팬(42a)과, 상기 원심팬(42a)을 구동시켜주는 팬모터(42b)로 이루어져 있으며, 원심팬(42a)과 팬모터(42b)는 밸트(43) 및 밸트차(44)에 의해 연결되어 있다.In addition, the discharge unit 4 has a cold air discharge port 41 is formed on the case 40 in communication with the interior of the building, the discharge blower 42 for forcibly discharging the cold air toward the cold air discharge port 41 It consists of). At this time, the discharge blower 42 is composed of a centrifugal fan 42a and a fan motor 42b for driving the centrifugal fan 42a, and the centrifugal fan 42a and the fan motor 42b are belts 43. ) And the belt car 44 are connected.
이러한 구성을 갖는 대용량 공기조화기의 냉방(난방과정도 동일함)을 설명하면 다음과 같다.Referring to the cooling (heating process is the same) of a large-capacity air conditioner having such a configuration is as follows.
먼저, 흡입송풍기(11)의 팬모터(11b)가 구동되면, 이 팬모터(11b)와 밸트(12)에 의해 연결된 원심팬(11a)이 회전됨에 따라 건물내의 고온공기가 기내로 유입되며, 유입된 고온공기는 1차 열교환기(23)를 통하면서 약 3 ~ 5℃ 정도 떨어진다.First, when the fan motor 11b of the suction blower 11 is driven, as the centrifugal fan 11a connected by the fan motor 11b and the belt 12 is rotated, high temperature air in the building flows into the cabin. The introduced hot air falls about 3 to 5 ° C. while passing through the primary heat exchanger 23.
이때, 상기 1차 열교환기(23)가 내장된 1차 열교환기 유닛(2)의 케이스(20) 상에는 외기가 유입되는 공기유입구(21)와 공기배출구(22)가 각각 형성되어 있으므로 열교환된 공기중 약 30%는 공기배출구(22)를 통해 외부로 배출되고, 반대로 공기유입구(21)로는 외기가 유입되어 잔류하고 있는 기내공기 약 70%와 혼합된 상태로 2차 열교환기 유닛(3)을 향해 유동된다.At this time, since the air inlet 21 and the air outlet 22 through which the outside air is introduced are formed on the case 20 of the primary heat exchanger unit 2 in which the primary heat exchanger 23 is embedded, the heat exchanged air About 30% of the air is discharged to the outside through the air outlet 22, and conversely, the secondary heat exchanger unit 3 is mixed with the air inlet 21 by mixing about 70% of the in-flight air remaining. Flow toward.
상기 2차 열교환기 유닛(3)으로 유입된 공기는 에어필터(31)를 통하면서 불순물이 여과된 이후, 에어필터(31)의 후방에 설치된 2차 열교환기(32)를 통과하면서 재차 저온으로 열교환 된다.After the impurities are filtered through the air filter 31, the air introduced into the secondary heat exchanger unit 3 passes through the secondary heat exchanger 32 installed at the rear of the air filter 31, and then again returns to low temperature. It is heat exchanged.
이와 같이 열교환된 저온 공기는 배출유닛(4)의 내부에 설치된 토출송풍기(42)의 회전력에 의해 케이스(40) 상에 설치된 냉기토출구(41)를 통해 건물내로 환원되는 과정이 반복되면서 실내의 냉방을 이루게 된다.The cold air heat-exchanged as described above is repeatedly cooled into the building through the cold air outlet 41 installed on the case 40 by the rotational force of the discharge blower 42 installed in the discharge unit 4, thereby cooling the room. Will be achieved.
그러나, 상기한 종래 대용량 공기조화기는 흡입송풍기(11)와 토출송풍기(42)의 각 팬모터(11b,42b)와 원심팬(11a,42a)이 밸트(12,43) 및 밸트차(13,44)에 의해 연결되어 있으므로, 장기간 사용시 밸트(12,43)가 인장되면서 정확한 동력전달이 이루어지지 않는 문제점이 있다.However, the conventional large-capacity air conditioner is a fan (11b, 42b) and centrifugal fan (11a, 42a) of the suction blower 11 and the discharge blower 42, the belt (12, 43) and the belt car (13, 44), there is a problem that the correct power transmission is not made while the belt (12, 43) is tensioned during long-term use.
또한, 상기와 같이 밸트(12,43)가 인장되면 밸트(12,43)를 교환해야하기 때문에 이에 따른 관리비용이 추가로 들어가는 문제점도 있다.In addition, when the belts 12 and 43 are tensioned as described above, the belts 12 and 43 need to be replaced, thereby resulting in additional management costs.
또한, 밸트(12,43)의 밸트차(13,44)와의 접촉면이 마모되면서 발생되는 밸트가루가 기내공기와 혼합되어 실내로 유입되므로 실내공기를 오염시키는 원인이 되고 있다.In addition, the belt powder generated as the contact surfaces of the belts 12 and 43 with the belt cars 13 and 44 are worn, and are mixed with the air in the cabin, thus causing indoor air to be contaminated.
또한, 팬모터(11b,42b)와 원심팬(11a,42a)이 밸트(12,43)에 의해 각각 연결되어 있으므로 이를 구성하기 위한 공간확보가 필연적이다. 아울러 팬모터(11b,42b)의 설치를 위해 팬모터 설치대(42c)가 반드시 설치되어야 했으므로 공조장치의 외형이 커짐은 물론, 설치 및 가격 경쟁력에서 불리한 조건으로 작용되고 있었다.In addition, since the fan motors 11b and 42b and the centrifugal fans 11a and 42a are connected by the belts 12 and 43, respectively, it is inevitable to secure a space for configuring them. In addition, since the fan motor mounting table 42c must be installed for the installation of the fan motors 11b and 42b, the appearance of the air conditioner was increased, and it was acting as a disadvantage in terms of installation and price competitiveness.
본 고안은 상기와 같은 종래의 문제점을 해결하기 위해 안출한 것으로서, 기존의 밸트구동방식의 송풍팬을 배제하고, 원심팬과 팬모터가 직결된 송풍팬을 적용한 대용량 공기조화기를 제공하는데 그 목적이 있다.The present invention has been made to solve the above-mentioned problems, the purpose of the present invention is to provide a large-capacity air conditioner by applying a blower fan directly connected to a centrifugal fan and a fan motor, excluding the existing belt driving fan. have.
도 1은 종래 대용량 공기조화기의 구성도1 is a block diagram of a conventional large-capacity air conditioner
도 2는 본 고안에 따른 대용량 공기조화기의 구성도2 is a block diagram of a large-capacity air conditioner according to the present invention
도면의 주요 부분에 대한 부호의 설명Explanation of symbols for the main parts of the drawings
100 : 흡입유닛 111, 211 : 원심팬100: suction unit 111, 211: centrifugal fan
112, 212 : 팬모터 101, 201 : 케이스112, 212: fan motor 101, 201: case
110 : 흡입송풍기 200 : 배출유닛110: suction blower 200: discharge unit
210 : 배출송풍기210: exhaust blower
상기 목적을 달성하기 위한 본 고안의 형태에 따르면, 실내공기를 흡인하는 흡입유닛, 1차 열교환 유닛, 2차 열교환 유닛, 열교환된 기내공기를 실내로 환원하는 배출유닛이 순차 배열된 구성의 대용량 공기조화기에 있어서;According to an aspect of the present invention for achieving the above object, a large-capacity air of a configuration in which the suction unit for sucking the indoor air, the primary heat exchange unit, the secondary heat exchange unit, the discharge unit for reducing the heat exchanged in-air air to the room in sequence In the conditioner;
상기 흡입유닛과 배출유닛에 내장되는 각 송풍기는 원심팬과 이를 구동시키는 팬모터가 직접 결합된 직결형 송풍기인 것을 특징으로 한다.Each blower built in the suction unit and the discharge unit is characterized in that the direct blower is directly coupled to the centrifugal fan and the fan motor for driving it.
이하, 본 고안의 바람직한 실시예를 첨부도면을 참조하여 상세히 설명하면 다음과 같다.Hereinafter, with reference to the accompanying drawings, preferred embodiments of the present invention in detail as follows.
도 2는 본 고안에 따른 대용량 공기조화기의 구성도이다.2 is a block diagram of a large-capacity air conditioner according to the present invention.
도면에 따르면, 본 고안의 대용량 공기조화기는 실내공기를 흡인하는 흡입유닛(100)과, 열교환된 기내공기를 실내로 환원하는 배출유닛(200)이 구비된 조건하에서, 상기 흡입유닛(100)과 배출유닛(200)에 적용되는 흡입송풍기(110)와 배출송풍기(210)는 원심팬(111,211)과 이를 구동시키기 위한 팬모터(112,212)가 직결된 직결형 송풍기가 적용됨을 특징으로 한다.According to the drawings, the large-capacity air conditioner according to the present invention is provided with a suction unit 100 for sucking indoor air and a discharge unit 200 for reducing heat exchanged in-flight air into the room. The suction blower 110 and the discharge blower 210 applied to the discharge unit 200 are characterized in that the direct blower is directly connected to the centrifugal fan (111,211) and the fan motor (112,212) for driving it.
이때, 상기 각 직결형 송풍기는 흡입유닛(100)과 배출유닛(200)의 케이스(101,201)에 고정 설치된다.At this time, each of the direct blower is fixed to the case (101,201) of the suction unit 100 and the discharge unit 200.
이러한 직결형 송풍기는 동력원(팬모터)으로부터 동작체(원심팬)를 연결하는 동력전달장치(밸트 및 밸트차)가 필요없기 때문에 여러 가지 측면에서 이점을 갖게 된다.Such a direct blower has advantages in many aspects because it does not require a power transmission device (belt and belt car) to connect the actuator (centrifugal fan) from the power source (fan motor).
우선, 첫 째로 얻을 수 있는 이점으로, 원심팬(111,211)의 회전속도가 별다른 유지 및 보수 없이도 지속적으로 유지되므로써 열교환 효율이 저하됨을 방지할 수 있다.First, as an advantage to be obtained first, since the rotational speed of the centrifugal fans 111 and 211 is continuously maintained without any maintenance and repair, the heat exchange efficiency can be prevented from being lowered.
즉, 기존의 동력전달장치를 이용한 송풍기의 경우에는 밸트가 인장되거나, 또는 밸트의 밸트차와의 접촉면이 마모되면서 원심팬의 회전력이 불균일 해지기 때문에 송풍량이 감소하게 된다. 이는 결국 열교환 효율의 감소를 가져오는 원인된다.That is, in the case of a blower using a conventional power transmission device, the amount of blowing is reduced because the belt is tensioned or the contact surface with the belt car of the belt is worn, resulting in uneven rotation of the centrifugal fan. This in turn causes a decrease in heat exchange efficiency.
이에 반해, 본 고안은 상술한 바와 같이 팬모터(112,212)와 원심팬(111,211)이 직결되어 있으므로 팬모터로부터 원심팬으로의 동력전달이 확실하게 이루어지기때문에 팬모터(112,212)의 회전력을 오랫동안 균일하게 유지할 수 있게 됨은 물론이고, 최초의 열교환 효율을 지속적으로 유지할 수 있는 장점을 갖게 된다.On the contrary, in the present invention, since the fan motors 112 and 212 and the centrifugal fans 111 and 211 are directly connected as described above, the power transmission from the fan motor to the centrifugal fan is made reliably, so that the rotational force of the fan motors 112 and 212 is uniform for a long time. Of course, it can be maintained, as well as has the advantage of continuing to maintain the first heat exchange efficiency.
둘 째로, 기존의 공기조화기 형태로부터 밸트 및 밸트차, 모터 베이스, 팬 베이스 등이 제거되므로 그 만큼 전체 사이즈를 줄일 수 있음은 물론, 구성의 단순화를 가져와 생산성을 향상시킬 수 있게 된다.Secondly, since the belt and the belt car, the motor base, the fan base, etc. are removed from the existing air conditioner type, the overall size can be reduced, and the configuration can be simplified to improve productivity.
세 째로, 밸트가 제거되므로 이를 교환하거나 보수해야 하는 번거러움과 경제적인 부담감이 없으며, 밸트가루가 발생되지 않으므로 공기의 오염을 방지할 수 있다.Third, since the belt is removed, there is no hassle and economic burden of replacing or repairing the belt, and since the belt powder is not generated, air pollution can be prevented.
이상과 같은 본 고안은 간단한 구성의 직결형 송풍기를 적용하므로써 구성의 단순화, 유지 및 관리의 용이성과 이에 따른 비용절감, 팬 회전속도의 지속성, 공기오염방지, 전체 사이즈 축소등의 여러 장점을 얻을 수 있다.The present invention as described above, by applying a direct blower of a simple configuration can be obtained a number of advantages, such as simplifying the configuration, ease of maintenance and management, resulting in cost reduction, sustained fan rotation speed, preventing air pollution, reducing the overall size have.
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| Application Number | Priority Date | Filing Date | Title |
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| KR2020000030378U KR200219142Y1 (en) | 2000-10-31 | 2000-10-31 | air-conditioner |
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| Application Number | Priority Date | Filing Date | Title |
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| KR2020000030378U KR200219142Y1 (en) | 2000-10-31 | 2000-10-31 | air-conditioner |
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| Application Number | Title | Priority Date | Filing Date |
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| KR10-2000-0064185A Division KR100393531B1 (en) | 2000-10-31 | 2000-10-31 | air-conditioner |
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