KR20200121966A - Artificial intelligence in the outdoor resetis remarkebly low cooling systems - Google Patents

Artificial intelligence in the outdoor resetis remarkebly low cooling systems Download PDF

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KR20200121966A
KR20200121966A KR1020190044607A KR20190044607A KR20200121966A KR 20200121966 A KR20200121966 A KR 20200121966A KR 1020190044607 A KR1020190044607 A KR 1020190044607A KR 20190044607 A KR20190044607 A KR 20190044607A KR 20200121966 A KR20200121966 A KR 20200121966A
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cooler
heat
artificial intelligence
ultra
outdoor
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KR1020190044607A
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KR102174983B1 (en
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손봉운
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(주)다원테크
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    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K7/00Constructional details common to different types of electric apparatus
    • H05K7/20Modifications to facilitate cooling, ventilating, or heating
    • H05K7/2029Modifications to facilitate cooling, ventilating, or heating using a liquid coolant with phase change in electronic enclosures
    • H05K7/20327Accessories for moving fluid, for connecting fluid conduits, for distributing fluid or for preventing leakage, e.g. pumps, tanks or manifolds
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K7/00Constructional details common to different types of electric apparatus
    • H05K7/20Modifications to facilitate cooling, ventilating, or heating
    • H05K7/20009Modifications to facilitate cooling, ventilating, or heating using a gaseous coolant in electronic enclosures
    • H05K7/20136Forced ventilation, e.g. by fans
    • H05K7/20172Fan mounting or fan specifications
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K7/00Constructional details common to different types of electric apparatus
    • H05K7/20Modifications to facilitate cooling, ventilating, or heating
    • H05K7/2029Modifications to facilitate cooling, ventilating, or heating using a liquid coolant with phase change in electronic enclosures
    • H05K7/20318Condensers

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  • Engineering & Computer Science (AREA)
  • Microelectronics & Electronic Packaging (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Other Air-Conditioning Systems (AREA)

Abstract

According to the present invention, heat generated from generating communications devices or electronic devices may cause malfunctions or fires of electronic devices, and to prevent such a phenomenon, a cooler capable of removing heat must be installed, by which installation cost and electric charges for maintaining equipment from cost for purchasing equipment occupy most of maintenance cost. Also, the purpose of the present invention is to cope with reality of depending on a cooler because of heat generated from electronic devices indoors even in winter, instead of using cold air outside because of dust or harmful substances that are fatal to the electronic devices even if outdoor temperature is below zero in winter. To this end, the present invention provides a method for newly increasing efficiency of a heat pipe having a circulation circuit therein, which is original patent 10-2009-0026232. Therefore, the present invention relates to super energy-saving artificial intelligence cooler suitable for reality, in which, for heat generated indoors, an ultra-conductive heating medium for moving only cold air without inflow of dust or harmful substances is used in a completely blocked space that is the basis of the present invention, an electronic pump is added for a method for allowing cold air outside to flow indoors with rapid heating medium circulation, an angle of a heat dissipation fin and a structure is configured for heat absorption and rapid circulation of a heating medium, and a general cooling method and an electronic Peltier chip that generates cold air and hot air at the same time are used in an auxiliary cooler.

Description

초 절전 외기보상 인공지능 냉각장치.{Artificial intelligence in the outdoor resetis remarkebly low cooling systems} Artificial intelligence in the outdoor resetis remarkebly low cooling systems.

본 발명은 실내온도가 외기온도보다 높을때 외기온도를 외부의 공기 및 먼지 유입없이 냉기만을 전도 받아 실내온도를 내려주는 초 절전형 인공지능형 냉각기에 관한 것이다. The present invention relates to an ultra-power-saving artificial intelligence cooler that lowers the indoor temperature by receiving only cold air without inflow of outside air and dust when the indoor temperature is higher than the outdoor temperature.

실내에서 열이 많이 발생되는 각종 전자기기들을 사용하다 보면 전자장비 특성상 높은 온도가 발생하는데 이 온도를 제거해 주지 못 하면 결국에는 전자장비가 오동작 및 소손 또는 화재가 발생하는 일이 벌어진다.When using various electronic devices that generate a lot of heat indoors, a high temperature occurs due to the characteristics of the electronic equipment. If this temperature cannot be removed, the electronic equipment eventually malfunctions, burns out, or causes a fire.

이러한 문제들을 해결하려면 현재 사용하고 있는 냉방기를 외기온도가 낮은 겨울철에도 가동해야 하므로 전력소모가 많아 장비 유지비 과다지출이 되고 있는 현실이며 또한 실외의 공기를 쉽게 유입하지 못 하는 이유는 전자기기에 치명적인 먼지와 공해물질이 실외공기 유입시 같이 유입되어 전자기기에 치명적인 소손을 발생 시킬수 있기 때문이다.In order to solve these problems, the current air conditioner must be operated even in winter when the outside temperature is low, so the power consumption is high and equipment maintenance costs are excessive. This is because pollutants and pollutants are introduced together when outdoor air is introduced, causing fatal damage to electronic devices.

그리고 통신유지시설에 있어서는 용량이 커지고 속도 또한 빨라야 되는 경쟁시대에 돌입하여 요즘 기지국이나 중계소에서 주로 사용되는 4G에서 더 빠르고 용량이 많은 5G로 교체되고 있는 실정이다.And communication maintenance facilities have entered a competitive era in which capacity has to be increased and speed has to be fast, and these days, 4G, which is mainly used in base stations or relay stations, is being replaced with 5G that is faster and has more capacity.

특히 새로 도입된 5G는 통신장비에서 발생하는 열 또한 급증하여 수시로 통신이 마비되고 통신선에서는 열이 많이 발생 되는데 열이 많이 발생되면 저항이 증가해 전류가 흐를때 방해를 받아 결국에는 화재가 발생하는 현상까지 다다르게 되는 것이다.In particular, the newly introduced 5G also rapidly increases the heat generated by communication equipment, causing frequent communication paralysis and generating a lot of heat from the communication line.If a lot of heat is generated, the resistance increases and is disturbed when the current flows, resulting in a fire. It will reach to.

이에 결국에는 더 큰 용량의 냉방기가 필요하게 되는데 이는 즉 장비구입비 및 교체비용과 전력소모량이 증가해 경제적인 손실과 전기료 및 유지비에 큰 부담을 안고 가야하는 실정이다.In the end, a larger capacity air conditioner is required, which means that equipment purchase and replacement costs and power consumption increase, which means that economic losses, electricity costs, and maintenance costs are largely burdened.

이러한 문제들을 해결하기 위해 본 발명품은 한 여름에는 냉방기를 가동시키지 안으면 실내온도가 영상70도에서 90도이상에 이르는 온도가 생성 되므로 이문제점을 해결하기 위해 용량이 큰 냉방기를 여러대 사용해야 하므로 전기세 부담이 큰 현실이다.In order to solve these problems, the present invention generates a temperature ranging from 70 degrees to 90 degrees Celsius when the air conditioner is not operated in the middle of the summer, so it is necessary to use several air conditioners with a large capacity to solve this problem. This is a great reality.

이에 본 발명인은 실내보다 낮은 실외의 냉기를 먼지나 유해물질에 상관없이 냉기만을 흡수 할 수있는 본 발명의 원천인 발명특허 10-2009-0026232인 내부에 작동유체 순환회로를 가지는 히트 파이프를 새롭게 개발 완료하고 초절전 인공지능형 냉각기를 결합시켜 현재 사용하고 있는 냉방기의 삼분의일 정도의 전력소비량으로 장비의 온도를 유지시키는 목적을 달성하였고 또한 외기 온도가 높은 여름철에도 보조 냉각기를 일반형과 전자 펠티어칩까지 할용하여 실외기도 실내몸체에 간소하게 취부하여 실외기없는 초 절전형 인공지능형 냉각기를 발명하였다. 이에 결국에는 더 큰 용량의 냉방기가 필요하게 되는데 이는 즉 장비구입비 및 교체비용과 전력소모량이 증가해 경제적인 손실과 전기료 및 유지비에 큰 부담을 안고 가야하는 실정이다.Accordingly, the present inventor newly developed a heat pipe having a working fluid circulation circuit inside the original invention patent 10-2009-0026232 that can absorb only cold air, regardless of dust or harmful substances, that is lower than indoors. Completed and combined with an ultra-power-saving artificial intelligence cooler, we achieved the purpose of maintaining the temperature of the equipment at a power consumption of about a third of the current cooler.Also, even in the summer when the outside temperature is high, the auxiliary cooler can be used as a general type and an electronic Peltier chip. Therefore, the outdoor unit was simply attached to the indoor body and invented an ultra-power-saving artificial intelligence cooler without an outdoor unit. In the end, a larger capacity air conditioner is required, which means that equipment purchase and replacement costs and power consumption increase, which means that economic losses, electricity costs, and maintenance costs are largely burdened.

이러한 문제들을 해결하기 위해 본 발명품은 한 여름에는 냉방기를 가동시키지 안으면 실내온도가 영상70도에서 90도이상에 이르는 온도가 생성 되므로 이문제점을 해결하기 위해 용량이 큰 냉방기를 여러대 사용해야 하므로 전기세 부담이 큰 현실이다.In order to solve these problems, the present invention generates a temperature ranging from 70 degrees to 90 degrees Celsius when the air conditioner is not operated in the middle of the summer, so it is necessary to use several air conditioners with a large capacity to solve this problem. This is a great reality.

이에 본 발명인은 실내보다 낮은 실외의 냉기를 먼지나 유해물질에 상관없이 냉기만을 흡수 할 수있는 본 발명의 원천인 발명특허 10-2009-0026232인 내부에 작동유체 순환회로를 가지는 히트 파이프를 새롭게 개발 완료하고 초절전 인공지능형 냉각기를 결합시켜 현재 사용하고 있는 냉방기의 삼분의일 정도의 전력소비량으로 장비의 온도를 유지시키는 목적을 달성하였고 또한 외기 온도가 높은 여름철에도 보조 냉각기를 일반형과 전자 펠티어칩까지 할용하여 실외기도 실내몸체에 간소하게 취부하여 실외기없는 초 절전형 인공지능형 냉각기를 발명하였다. Accordingly, the present inventor newly developed a heat pipe having a working fluid circulation circuit inside the original invention patent 10-2009-0026232 that can absorb only cold air, regardless of dust or harmful substances, that is lower than indoors. Completed and combined with an ultra-power-saving artificial intelligence cooler, we achieved the purpose of maintaining the temperature of the equipment at a power consumption of about a third of the current cooler.Also, even in the summer when the outside temperature is high, the auxiliary cooler can be used as a general type and an electronic Peltier chip. Therefore, the outdoor unit was simply attached to the indoor body and invented an ultra-power-saving artificial intelligence cooler without an outdoor unit.

실내에서 고온이 발생되어 통신장에나 전자기기 또는 발열체의 고장 및 성능이 저하 되고 또한 화재발생도 일어날 수 있어 온도를 낮추려는 과정에서 많은 전력소모가 되는데 이 이유로 장비유지 및 관리비 부담이 증가 되는데;High temperatures are generated indoors, causing failure and performance degradation of communication fields, electronic devices, or heating elements, and fire may also occur, which consumes a lot of power in the process of lowering the temperature, which increases the burden of equipment maintenance and maintenance costs;

본 발명은 이 문제를 실외의 낮은 온도를 먼지나 공해물질의 유입없이 격리된 상태에서 본 발명품을 이용해 적은 전기소모량으로 장비 유지비 및 관리비 부담을 줄이고자 초 절전 인공지능형 냉각기 적용을 목적으로 한다.The present invention aims to apply an ultra-power-saving artificial intelligence cooler in order to reduce the burden of equipment maintenance and management costs by using the present invention in a state in which the low temperature outdoors is isolated without inflow of dust or pollutants.

상기의 문제를 해결하기 위한 방법으로는 우선 실외의 낮은 온도의 공기를 실내로 유입시켜야 하는데 상기와 같은 문제점을 해결하기 위하여 본 발명은 실외의 낮은공기를 유입하는 과정에서 먼지와 유해물질의 실내에 공급되는 것을 막기위해 본 발명인이 발명하여 특허등록되어 있는 발명특허10-2009-0026232에 의거 먼지나 유해물질 유입을 막기 위해 실내와 실외를 격막을 이용하여 분리하고 분리된 상태에서 냉과 열만 이동할 수 있는 초 전도성 히트파이프;As a method to solve the above problem, first, air of low temperature outdoors must be introduced into the room. In order to solve the above problem, the present invention is to prevent dust and harmful substances from entering the indoor area in the process of introducing low outdoor air. According to the invention patent 10-2009-0026232, which has been invented and patented by the inventor to prevent supply, the indoor and outdoor are separated using a diaphragm to prevent the inflow of dust or harmful substances, and only cold and heat can be moved in the separated state. Super conductive heat pipe;

상기의 초 전도성 히트파이프의 성능을 높이기 위해서는 열매를 빠른시간에 이송 증발을 유도하고 빠른 반복작용으로 효율을 증대시키기 위함이고 가압장치인 전자펌프를 포함하며 또한 분배장치에 분사노즐을 구비한 가압장치인 전자펌프;In order to increase the performance of the superconducting heat pipe, it is to induce evaporation by transferring the fruit in a short time and to increase the efficiency through rapid repetition. It includes an electronic pump as a pressurizing device, and a pressurizing device equipped with a spray nozzle in the distribution device Phosphorus electronic pump;

상기외 보조 냉각기를 보유하여 외기온도가 높을때 보상해주고 실외기가 따로 설치되지 않고 실내 내부와 간편하게 분리되어 있는 실외공기 순환공간을 이용하여 보조 냉각기를 설치하여 실외기 없이 보조냉각장치를 포함 하였고;It has an auxiliary cooler outside the above to compensate when the outside air temperature is high, and an auxiliary cooler is installed without an outdoor unit by installing an auxiliary cooler using an outdoor air circulation space that is not separately installed and is easily separated from the indoor interior;

상기외에 또 펠티어칩을 이용하고 펠티어칩을 이용한 보조냉각기에도 발열부 응축냉각을 히트파이프를 이용하여 응축냉각장치를 포함해서 간편하게 보조냉각장치를 포함시킨 펠티어칩 보조냉각기;In addition to the above, a Peltier chip auxiliary cooler including a condensation cooling device using a Peltier chip and a condensation cooling device in the auxiliary cooler using a Peltier chip using a heat pipe and a simple auxiliary cooling device;

현 시점에서 실내에서 통신장비가 발열되어 온도가 상승 되는 것을 냉방기 가동으로 온도를 낮추려는 방법을 사용할시 전력소모 과다와 유지비 과다 지출이 예상 되지만 본 발명으로 저렴한 비용으로 장비관리가 유지되는 초 절전형 냉각기를 가지는 특징이있다. At the present time, when using the method of lowering the temperature by operating the air conditioner when the communication equipment heats up indoors, excessive power consumption and excessive expenditure on maintenance costs are expected, but the present invention maintains the equipment management at low cost. There is a characteristic that has

상기와 같이 본 발명은 전력소비가 많은 통신장비나 각종 전자장비를 적은 유지비로 관리하면서 에너지절감은 물론 고장이나 화재예방까지 할 수 있는 효과가 있다.As described above, the present invention has the effect of saving energy as well as preventing failure or fire while managing communication equipment or various electronic equipment that consume a lot of power at a low maintenance cost.

또한 본 발명은 사계절 중에서 온도가 최고 고온일대 외에는 전력소모가 많은 냉방기 가동을 하지 않아도 되고 순환팬만 가동시켜도 실내 온도를 낮출수 있기때문에 전기소모량을 최소로 줄일 수 있고;In addition, the present invention can reduce the amount of electricity consumption to a minimum because it is not necessary to operate a cooler that consumes a lot of power except in a region where the temperature is the highest in the four seasons, and the indoor temperature can be lowered only by operating the circulation fan;

온도가 높을때도 먼지가 없는 낮은 외기에서 냉기만을 전도 받을수 있어 전력소비가 최소화되어 에너지 절감효과를 눈으로 확인이 될 수 있다.Even when the temperature is high, only cold air can be conducted from the low dust-free air, so power consumption is minimized, and the energy saving effect can be visually confirmed.

그리고 본 발명은 기술한 특정의 바람직한 실시예에 한정되지 않으며 청구범위에서 청구하는 본 발명의 요지를 벗어 남이없이 상기 기술한 발명에 속하는 기술분야에서 지식을 가진자라면 누구나 여러가지로 변형 실시가 가능한 것이고,그와 같은 모방은 청구범위 내에 있게 된다. In addition, the present invention is not limited to the specific preferred embodiments described, and anyone with knowledge in the technical field belonging to the above-described invention can perform various modifications without departing from the gist of the invention claimed in the claims, Such imitations are within the scope of the claims.

도1은 본 발명의 실시예인 격리 된 공간에서 기본적으로 먼지를 실내에 유입시키지 않고 낮은 외기온도만를 전도받아 기본 실외의 낮은 온도를 각종 발열기기들이 높은 온도를 발생시키는 실내에 공급하며 즉 냉 흡수장치와 열 흡수장치 또한온도가 높은 한 여름에 대비하기 위한 일반적인 냉동기를 이용한 보조냉각기를 포함한 구성도이다.
도2는 상기 본 발명의 실시예인 격리 된 공간에서 기본적으로 먼지를 실내에 유입시키지 않고 낮은 외기온도만을 전도받아 기본 실외의 낮은 온도를 각종 발열기기들이 냉 흡수장치와 열 흡수장치 또한 실외의 온도가 높은 여름철에 대비하기위한 펠티어칩을 이용한 보조 냉각기를 포함한 구성도이다.
도3은 상기의 본 발명 실시예인 기본 열전도장치의 구조와 빠른 초전도성 열매의 순환을 돕기 위한 가압보조 장치인 전자펌프를 포함하고 가압된 열매를 빠르고 넓게 분사시켜 열을 흡수하고 응축부로 보내지는계통 및 구성과 격리판을 가지는 도이다.
도4는 상기의 일반적인 냉동기를 이용한 보조냉각장치를 가지는 구성과 펠티어칩을 이용하여 보조냉각기능을 가지는 구성과 계통도이다.
Figure 1 is an embodiment of the present invention in an isolated space that basically does not introduce dust into the room, but only receives low outside air temperature and supplies the basic outdoor low temperature to the room where various heating devices generate high temperature. And heat absorber is also a configuration diagram including an auxiliary cooler using a general refrigerator to prepare for a high summer temperature.
FIG. 2 shows that in an isolated space, which is an embodiment of the present invention, basically, dust is not introduced into the room, but only a low outdoor temperature is conducted, so that various heating devices are equipped with a cold absorber and a heat absorber. It is a configuration diagram including an auxiliary cooler using a Peltier chip to prepare for the high summer season.
3 is a system including the structure of the basic heat conduction device according to the embodiment of the present invention and an electronic pump, which is a pressurization auxiliary device for helping rapid circulation of the superconducting fruit, and absorbs heat by spraying the pressurized fruit quickly and widely to absorb heat and send it to the condensing unit. It is a diagram with a composition and a separator.
4 is a configuration and a system diagram having a configuration having an auxiliary cooling device using the above general refrigerator and an auxiliary cooling function using a Peltier chip.

이하 본 발명을 첨부된 도면에 의해 보다 상세하게 설명하면 다음과 같다 도1은 본 발명의 제1실시예에 따른 초 절전형 외기온도를 보상하는 인공지능형 냉각기(가)의 구성과 도2의 냉각기(나) 또한 실외 온도가 높을때 보상되는 보조 냉각기를 포함한 구성과 계통도이다.Hereinafter, the present invention will be described in more detail with reference to the accompanying drawings. FIG. 1 is a configuration of an artificial intelligent cooler (A) that compensates for the ultra-power-saving outdoor temperature according to the first embodiment of the present invention and the cooler of FIG. B) It is also a configuration and system diagram including an auxiliary cooler that is compensated when the outdoor temperature is high.

도1을 참조하면 본 실시예에 따른 초 절전 인공지능냉각기(가)는 냉각기 실본체(가)와 외기온도를 보상해주는 초 전도성열교환기(74) 또한 내부공기를 낮추어주는 실내열매증발부(25)와 외기온도가 높을때 온도를 보상해주는 보조냉각열교환기(61)를 가지고 그외 중앙제어부(33)을 가지며 내부순환팬(20) 외부순환팬(5)과 냉 및 열의 전도및 빠른 열교환을 위한 가압용전자펌프(12) 실외온도가 높을때 가동되어 실내온도를 보상할때 필요한 보조열교환기(61) 콤프레샤(83) 응축부(76)와 팽창변(66)을 가지고 본 발명의 취지를 수행하기 위한 구성이다.Referring to FIG. 1, the ultra-power-saving artificial intelligent cooler (A) according to the present embodiment includes a cooler body (A) and an ultra-conductive heat exchanger 74 that compensates for the outside air temperature, and an indoor heat evaporation unit 25 that lowers the internal air. ) And an auxiliary cooling heat exchanger (61) that compensates for the temperature when the outside air temperature is high, and the other central control unit (33), and an internal circulation fan (20) and an external circulation fan (5) for cold and heat conduction and fast heat exchange. The pressurization electronic pump 12 is operated when the outdoor temperature is high, and the auxiliary heat exchanger 61 required to compensate for the indoor temperature has a compressor 83, a condensing part 76 and an expansion valve 66 to carry out the purpose of the present invention. It is a configuration for.

위 본 발명의 취지는 발전하는 통신장비나 전자기기등의 성능대비 높아지는 발열 때문에 높아지는 실내온도로 인해 장비를 운영 유지하는데 많은 전력이 소모되는데 이에 외부의 낮은 온도를 내부로 먼지나 유해물질 등을 유입시키지 않고 본체(가)를 이용하고 유입구(2)에서 실내보다 낮은 온도의 공기를 유입하고 열매 응축액(22)이 순환 되면서 내부의 높은온도에 의해 증발한열매(25)는 실내온도를 내려주고 실외공기응축액부(38)로 다시 이동하게 된다.The purpose of the present invention above is that a lot of power is consumed to operate and maintain the equipment due to the increased indoor temperature due to the increased heat generation compared to the performance of communication equipment or electronic devices that are being generated. Accordingly, dust or harmful substances are introduced into the interior at a low external temperature. Without the use of the main body (A), air of a temperature lower than the indoor temperature is introduced through the inlet (2), and the fruit condensate (22) is circulated, and the evaporated fruit (25) by the high internal temperature lowers the indoor temperature and It moves back to the air condensate part 38.

상기 외부냉기를 이용한 내부열매증발부(25)는 열을 가지고 증발한 열매를 외기냉기 흡수동핀(18)은 효율을 증가시키고 액화된 열매(38)응축액은 열매응축액탱크(22)에 모이고 가압하여 분사시키는 장치 전자펌프(12)는 이 열매를 가압하여 다시 실내에 있는 초 전도성열교환기의 분배기(21)로 보내져 반복으로 열 이동을 시키며 외기 온도가 높을때는 보조냉각기가 가동되어 응축된 액은 팽창변(66)을 통과 하면서 교축 팽창되며 열매를 과냉각 시켜준다. The internal heat evaporation unit 25 using the external cool air extracts the fruit evaporated with heat, and the external cool air absorption copper pin 18 increases the efficiency, and the liquefied fruit 38 condensate is collected in the fruit condensate tank 22 and pressurized. The device for spraying the electronic pump 12 pressurizes the fruit and sends it back to the distributor 21 of the superconducting heat exchanger in the room for repeated heat transfer. When the outside temperature is high, the auxiliary cooler is operated and the condensed liquid is expanded. As it passes through (66), it is throttled and expanded, and it supercools the fruit.

또한 열교환기(61)를 통과하면서 온도가 낮아지며 가압된 액을 각 부위로 골고루 분사시키는 노즐분사기(21)에서는 넓은 면적으로 골고루 열매가 분사되어 많은 열을 빠른시간에 흡수시키려고 흡열핀(18)을 가지며 효율은 증대된다. In addition, the temperature is lowered while passing through the heat exchanger (61), and in the nozzle sprayer (21), which sprays the pressurized liquid evenly to each part, the heat absorbing fin (18) is installed to absorb a lot of heat in a quick time by spraying the fruit evenly over a large area. And the efficiency is increased.

그러므로 냉기를 흡수하는 실내열매증발부(25)로 실내 열을 빠르게 흡수하며 실외공기 응축부(38)로 빠른 시간에 이동되어 증발과 응축이 반복되는 작용으로 실내 온도를 낮추는 기능을 갔는다. Therefore, the indoor heat evaporation unit 25 that absorbs cold air quickly absorbs indoor heat and moves to the outdoor air condensation unit 38 in a short time, thereby reducing the indoor temperature by repeating evaporation and condensation.

또 상기 보조냉각기 증발부열교환기(61)는 냉매를 응축시키는 응축기(76)와 휠타 드라이어(75)를 지나고 응축액을 교축팽창시키는 팽창변(66)을 통과하면 직접 냉기를 증발부열교환기(61)에서 저온을 발생시켜서 외기가 고온일때 응축열매탱크(22)에 저장된 열매를 냉각시켜서 실내온도를 낮추어준다. In addition, when the auxiliary cooler evaporation part heat exchanger 61 passes through the condenser 76 and the filter dryer 75 for condensing the refrigerant, and passes through the expansion valve 66 for throttling and expanding the condensate, it directly evaporates the cold air part heat exchanger 61 When the outside air is high by generating a low temperature, it cools the fruit stored in the condensed fruit tank 22 to lower the indoor temperature.

상기 실외의 낮은 온도를 이용한 초 절전형냉각기의 기본이 되는 본체(가)에서 격막판(77 )을기준으로 증발부(25)와 포함하고 응축부(38)의 효율을 증대하기 위해 응축부(38)에 방열핀을 추가하여 응축효율을 높이고 증발부(25) 또한 방열핀(18)을 추가해 증발효율을 증가시키고 먼지와 유해물질을 배제하기 위한 방법으로 실외공기가 실내에 유입 되는것을 막기위한 격막판(77)을 포함한다. In order to increase the efficiency of the condensing part 38, the condensing part 38 is included with the evaporation part 25 based on the diaphragm plate 77 in the main body (A) which is the basis of the ultra-low temperature outdoor cooler. ) To increase condensation efficiency, and to increase evaporation efficiency by adding a radiating fin (18) to the evaporation unit (25), and to exclude dust and harmful substances. 77).

상기외 기능이 추가되는 보온된 격막판(77)과 실내의 높은 온도를 더 빠르게 제거하기 위해 응축부(38)을 포함하고 응축효율을 더 증가시키기 위해 방열핀을 가지고 있고 또한 열매응축액탱크(22)는 가압용 전자펌프(12)에 원활한 열매공급을 위해 열매저장을 하여 액을 가압시킬때 액이 충분이 공급하기 위한 구성이다. It includes a heat-insulated diaphragm plate 77 to which functions other than the above are added and a condensing part 38 to remove high indoor temperature more quickly, and has a heat dissipation fin to further increase condensation efficiency, and a heat transfer condensate tank 22 Is a configuration for supplying sufficient liquid when the liquid is pressurized by storing the heat for smooth heat supply to the pressurizing electronic pump 12.

그리고 증발부(25)도 구성요소에 포함되며 증발부(25) 또한 방열핀(18)을 가지며 더 빠르게 열교환순환 시키는 구성이다 In addition, the evaporation unit 25 is also included in the component, and the evaporation unit 25 also has a heat dissipation fin 18 and is a configuration for faster heat exchange circulation.

도2를 보면 상기 도1과 같은 구성과 기능을 가지며 단 외기 온도가 높을때는 냉각 효율이 많이 떨어져 온도 유지에 많은 지장과 장비 유지에 문제가 발생할수 있으므로 실내온도 유지에 문제가 발생하였을때 보조 냉각기를 바탕으로 도1에서는 일반적인 방법으로 냉동기를 적용하여 보조냉각기능을 실행하였다. 2, it has the same configuration and function as in FIG. 1, but when the outside temperature is high, the cooling efficiency decreases, and there may be a lot of trouble in maintaining the temperature and problems in maintaining the equipment, so when a problem occurs in maintaining the indoor temperature, the auxiliary cooler Based on FIG. 1, the auxiliary cooling function was performed by applying a refrigerator in a general manner.

도2에서는 보조냉각기에 있어서 전자펠티어칩(50)을 주축으로 상기와 같이 펠티어칩의 냉각작용을 위해 발열부(57)의 온도를 낮추는데 열매를 응축시키는 열매응축기(55)가 있고 액화된 액은 펠티어칩 열발생부(52)에 공급되며 공급된 열매는 고온이 발생되며 증발하는데 이 증발된 열매를 다시 사용하기 위해 냉각시키는 열매응축기(55)도 또한 가진다. In Fig. 2, in the auxiliary cooler, the electronic Peltier chip 50 is used as the main axis to lower the temperature of the heating part 57 for cooling the Peltier chip as described above. There is a thermal condenser 55 for condensing the fruit, and the liquefied liquid is It is supplied to the Peltier chip heat generating unit 52, and the supplied fruit is evaporated at a high temperature. It also has a fruit condenser 55 that cools the evaporated fruit to be used again.

상기에 실시된 예를 들면 본체(가)와 본체(나)의 기능은 위에 도1과 도2도3 도4의 실시예에 전체를 적용해 구성되어 있고 위 실시예는 효율을 극대화시키기 위한 본 발명의 취지며 그 외에 냉각된 물 또는 조금 다른물질을 이용하여 보조냉각을 위해 사용할 수 있고 동종업게에 종사하는 기술 보유자는 위 실시예를 조금 변화시켜 구성 할 수는 있겠지만 이는 본 발명을 근원으로 모방 되었음을 밝혀두고자한다. For example, the functions of the main body (A) and the main body (B) as implemented above are configured by applying the whole to the embodiment of Fig. 1 and Fig. 2 and Fig. 4, and the above embodiment is to maximize efficiency. It is the intent of the invention, and it can be used for auxiliary cooling by using cooled water or a slightly different material, and technology holders who are engaged in the same industry may change the above embodiment slightly, but this mimics the present invention. I want to reveal that it has been done.

가: 초 절전형 냉각기 본체 나: 펠티어칩을 이용한 초 절전형 냉각기
다: 기본 초 전도성 열교환기 라: 전자펌프를 포함한 초 절전형 열교환기
마: 보조 냉각기 바: 펠티어칩을 이용한 보조 냉각기
2: 외기 흡입구 3: 외기 배기구 5: 외기 배기용 송풍기 6: 보조 냉각기 응축팬
12: 전자 펌프 15: 실외 공기 응축기
17: 열매 증발부액 18: 증발핀
20: 내부 순환용 공급팬 21: 응축액 분사관
22: 열매 응축액 탱크 23: 실내 배기구
24; 실내 흡입구 25: 실내 열매증발부
33: 중앙 제어기 38: 실외공기 응축액부
50: 전자 펠티어칩 52: 펠티어칩 발열부
53: 펠티어칩 응축부핀 55: 펠티어칩 응축부
56: 펠티어칩 냉각부 열교환기 57: 펠티어칩 발열부
61: 냉동기 증발부 열교환기 65: 액 분리기
66: 팽창변 74: 초 전도성 열교환기
75: 휠타 드라이어 76: 보조 냉각기 응축핀
77: 실외와 실내 차단장치(격막판)83: 보조 냉각기 콤프레샤
85: 보조 냉각기 응축코일
A: Ultra power saving cooler body B: Ultra power saving cooler using Peltier chip
C: Basic ultra-conductive heat exchanger D: Ultra-power-saving heat exchanger including electronic pump
E: Auxiliary cooler Bar: Auxiliary cooler using Peltier chips
2: Outside air inlet 3: Outside air exhaust port 5: Outdoor air exhaust blower 6: Auxiliary cooler condensing fan
12: electronic pump 15: outdoor air condenser
17: fruit evaporation liquid 18: evaporation pin
20: supply fan for internal circulation 21: condensate injection pipe
22: thermal condensate tank 23: indoor exhaust port
24; Indoor intake port 25: Indoor thermal evaporation unit
33: central controller 38: outdoor air condensate part
50: electronic Peltier chip 52: Peltier chip heating unit
53: Peltier chip condensation part Pin 55: Peltier chip condensation part
56: Peltier chip cooling unit heat exchanger 57: Peltier chip heating unit
61: refrigerator evaporator heat exchanger 65: liquid separator
66: expansion valve 74: super conductive heat exchanger
75: filter dryer 76: auxiliary cooler condensing fin
77: outdoor and indoor blocking device (diaphragm plate) 83: auxiliary cooler compressor
85: auxiliary cooler condensing coil

Claims (3)

실내의 열기를 실외의 낮은 공기를 이용한 초 절전 인공지능형 냉각기 본체(가)를 포함하며 초 전도성 열매를 이용한 각도를 가지는 열교환기;
또한 외부공기를 차단시키는 차단장치 격막판(77)을 비롯하여 중앙제어기(33)와 공기순환팬(20)을 포함하는 실내부;
냉각기본체(가)에서 실내와 실외부분에 각도를 가지는 초 전도성 열교환기(74); 히트파이프응축부(38)와 액부(22)의 라인을 가지며 또한 열매를 가압 시키고 분기(21)로 보내는 전자펌프(12)와 분배기(21)를 포함하며 실외온도가 높을때 보조냉각기에서 냉을 전도 받을 수 있는 열교환기(61)와 방열핀(18);
냉각기본체(가)에서 실외의 공기를 흡입기키고 분출시키는 배기팬(5)와 실외의 온도가 높을때 응축된 열매를 냉각 시키는 보조냉각장치에서 냉매를 압축하는 콤프레샤(83)와 열교환기(61)와 팽창변(66)도 포함하고 응축부(76);
A heat exchanger including an ultra-power-saving artificial intelligence cooler body (A) using indoor heat and low outdoor air, and having an angle using super conductive heat;
In addition, an interior unit including a central controller 33 and an air circulation fan 20, including a barrier plate 77 for blocking external air;
A superconducting heat exchanger 74 having an angle between the indoor and outdoor portions of the cooling body (A); It has a line of the heat pipe condensing part 38 and the liquid part 22, and includes an electronic pump 12 and a distributor 21 that pressurizes the fruit and sends it to the branch 21. When the outdoor temperature is high, the auxiliary cooler Heat exchanger 61 and heat dissipation fin 18 capable of being conducted;
A compressor (83) and a heat exchanger (61) that compress the refrigerant in an exhaust fan (5) that inhales and ejects outdoor air from the cooling body (A), and an auxiliary cooling device that cools the condensed fruit when the outdoor temperature is high. And the expansion valve 66 and also includes a condensing unit 76;
제1항에 있어서 도1 초 절전 인공지능형 냉각기(가)의 구성과 기능을 포함하고;
도2 초 절전형 인공지능형 냉각기(나)의 펠티어칩(50)을 이용한 보조 냉각기(56);
펠티어칩(50)의 발열부 응축부핀(53) 응축부(55) 펠티어칩 발열부(52) 펠티어칩(50);
펠티어칩(50)과 일체형으로 제작된 펠티어칩 냉각부 열교환기(56)와 가압을 위한 장치 전자펌프(12)를 가지는 응축액 분사관(21);
상기 구성의 펠티어칩(50)을 이용한 보조 냉각장치를 포함한 장치;
According to claim 1, comprising the configuration and function of the ultra-power saving artificial intelligence cooler (a);
Secondary cooler 56 using the Peltier chip 50 of the ultra-power-saving artificial intelligence cooler (B);
The heating part of the Peltier chip 50 Condensing part pin 53 Condensing part 55 Peltier chip heating part 52 Peltier chip 50;
A condensate injection pipe 21 having a Peltier chip cooling unit heat exchanger 56 manufactured integrally with the Peltier chip 50 and an electronic pump 12 for pressurization;
A device including an auxiliary cooling device using the Peltier chip 50 of the above configuration;
제1항에 있어서 초 절전 인공지능형 냉각기(가)를 포함하고 초 절전 인공지능형 냉각기(나)와 도3과 같이 각도를 가지는 히트파이프; 가압과 분배를 원활하게하기위한 전자펌프를 포함하고; 도4를 포함하는 보조 냉각기 구성과 제1항과 제2항과 같이 별도의 실외기 구성이 없이 일체형으로 구성된 초 절전 인공지능형 냉각기.


According to claim 1, including an ultra-power saving artificial intelligence cooler (A), the ultra-power saving artificial intelligence cooler (B) and a heat pipe having an angle as shown in FIG. It includes an electronic pump for smooth pressurization and distribution; The auxiliary cooler configuration including FIG. 4 and an ultra-power-saving artificial intelligence cooler configured integrally without a separate outdoor unit configuration as in claim 1 and claim 2.


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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111609498A (en) * 2020-06-22 2020-09-01 北京纳源丰科技发展有限公司 Machine room heat extraction system for pre-refrigeration by utilizing heat pipe cold wall
CN114374150A (en) * 2022-01-18 2022-04-19 沈阳工程学院 Small-size distributed energy is incorporated into power networks and uses controller

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KR19980058362U (en) * 1997-02-21 1998-10-26 박문권 Air conditioner
KR100861005B1 (en) * 2007-08-10 2008-09-30 연세대학교 산학협력단 Air-conditioner comprised thermoelectric module and heat pipe
KR20080105607A (en) * 2007-05-31 2008-12-04 주식회사 창조이십일 Air conditioning system for communication equipment and method for preventing frozen

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Publication number Priority date Publication date Assignee Title
KR19980058362U (en) * 1997-02-21 1998-10-26 박문권 Air conditioner
KR20080105607A (en) * 2007-05-31 2008-12-04 주식회사 창조이십일 Air conditioning system for communication equipment and method for preventing frozen
KR100861005B1 (en) * 2007-08-10 2008-09-30 연세대학교 산학협력단 Air-conditioner comprised thermoelectric module and heat pipe

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111609498A (en) * 2020-06-22 2020-09-01 北京纳源丰科技发展有限公司 Machine room heat extraction system for pre-refrigeration by utilizing heat pipe cold wall
CN114374150A (en) * 2022-01-18 2022-04-19 沈阳工程学院 Small-size distributed energy is incorporated into power networks and uses controller

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