KR101383022B1 - Drinking water instantaneous cooling equipment built in water purifying filter for cooling - Google Patents

Drinking water instantaneous cooling equipment built in water purifying filter for cooling Download PDF

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KR101383022B1
KR101383022B1 KR1020120121354A KR20120121354A KR101383022B1 KR 101383022 B1 KR101383022 B1 KR 101383022B1 KR 1020120121354 A KR1020120121354 A KR 1020120121354A KR 20120121354 A KR20120121354 A KR 20120121354A KR 101383022 B1 KR101383022 B1 KR 101383022B1
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South Korea
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water
cooling
drinking water
drinking
cooling device
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KR1020120121354A
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Korean (ko)
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유인수
나선덕
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(주)구츠
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    • 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
    • F25D31/00Other cooling or freezing apparatus
    • F25D31/002Liquid coolers, e.g. beverage cooler
    • F25D31/003Liquid coolers, e.g. beverage cooler with immersed cooling element
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage
    • C02F1/001Processes for the treatment of water whereby the filtration technique is of importance
    • C02F1/003Processes for the treatment of water whereby the filtration technique is of importance using household-type filters for producing potable water, e.g. pitchers, bottles, faucet mounted devices
    • 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
    • F25B49/00Arrangement or mounting of control or safety devices
    • F25B49/02Arrangement or mounting of control or safety devices for compression type machines, plants or systems
    • F25B49/022Compressor control arrangements
    • 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
    • F25D29/00Arrangement or mounting of control or safety devices
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F2209/00Controlling or monitoring parameters in water treatment
    • C02F2209/02Temperature
    • 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
    • F25D2323/121General constructional features not provided for in other groups of this subclass the refrigerator is characterised by a water filter for the water/ice dispenser
    • 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
    • F25D2400/00General features of, or devices for refrigerators, cold rooms, ice-boxes, or for cooling or freezing apparatus not covered by any other subclass
    • F25D2400/28Quick cooling
    • 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
    • F25D2700/00Means for sensing or measuring; Sensors therefor
    • F25D2700/16Sensors measuring the temperature of products

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  • 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)
  • Life Sciences & Earth Sciences (AREA)
  • Hydrology & Water Resources (AREA)
  • Environmental & Geological Engineering (AREA)
  • Water Supply & Treatment (AREA)
  • Organic Chemistry (AREA)
  • Devices That Are Associated With Refrigeration Equipment (AREA)

Abstract

The present invention relates to a drinking water instantaneous cooling system with a cooling water filter, and more particularly, to a drinking water instantaneous cooling system with a cooling water filter, which cools raw water supplied through a water pipe and supplies the cooled water as drinking water while disposing the cooling water filter in a cooling water tank to optimize the capacity of cooled drinking water, thereby enabling the cooled drinking water to be continuously supplied even if the amount of cooled drinking water consumed is increased. According to the present invention, especially, in the process wherein the drinking water is cooled by using a cooling device, raw water or hot water supplied through the water pipe is first cooled and then supplied to the water filter, thus collecting and using the cool air emitted to the outside, improving the efficiency of a compressor, preventing overload, and improving energy efficiency. Accordingly, the reliability and competitiveness of the product of the present invention can be improved in the fields of drinking water supply devices, cool water supply devices, cool and hot water dispensers, and water purifiers, and fields similar or related thereto.

Description

냉각용 정수필터가 내장된 음용수 순간 냉각 장치{Drinking water instantaneous cooling equipment built in water purifying filter for cooling}Drinking water instantaneous cooling equipment built in water purifying filter for cooling}

본 발명은 냉각용 정수필터가 내장된 음용수 순간 냉각 장치에 관한 것으로서, 보다 상세하게는 수도관로 등을 통해 공급되는 원수를 순간적으로 냉각하여 음용수로 공급함에 있어, 냉각수조의 내부에 냉각용 정수필터를 구성하여 음용수의 냉각량을 극대화시킴으로써, 냉각된 음용수의 사용량이 증가하여도 지속적으로 냉각된 음용수를 공급할 수 있도록 한 것이다.The present invention relates to a drinking water instantaneous cooling device having a built-in cooling water filter, and more particularly, in the instantaneous cooling of raw water supplied through a water pipe, etc., to be supplied to drinking water, a cooling water filter for cooling is provided inside the cooling water tank. By maximizing the cooling amount of the drinking water by the configuration, even if the amount of the cooled drinking water increases, it is possible to continuously supply the cooled drinking water.

특히, 본 발명은 냉각장치를 이용하여 음용수를 냉각하는 과정에서, 외부로 방출되는 냉기를 회수하여 사용함으로써, 에너지효율을 향상시킬 수 있도록 한 냉각용 정수필터가 내장된 음용수 순간 냉각 장치에 관한 것이다.
In particular, the present invention relates to a drinking water instantaneous cooling device with a built-in cooling water filter for improving energy efficiency by recovering and using cold air discharged to the outside in the process of cooling drinking water using a cooling device. .

일반적으로 냉수기는 수도관로 등을 통해 공급되는 원수 또는 정수를 냉각하여 제공하는 것으로, 크게 저수탱크가 없으며 수도관로에 직접 연결하여 사용하는 수도관 직결식 냉수기와, 정수된 물을 저수탱크에 저장하였다가 공급하는 저장식 냉수기로 구분할 수 있다.In general, the cold water is provided by cooling the raw water or purified water supplied through the water pipe, etc., there is no storage tank largely, and the water pipe directly connected to the water pipe used directly connected to the water pipe, and the purified water is stored in the storage tank It can be divided into storage cold water supply.

직결식 냉수기의 경우, 수도관로를 통해 공급되는 원수를 그대로 제공하거나 정수필터로 여과하여 음용수로 제공하는 과정에서, 정수필터의 배출부와 냉수기의 코크(Cock) 사이에 냉각관(냉매관)을 설치하여, 정수된 물이 코크를 통해 배출되는 과정에서 순간적으로 냉각될 수 있도록 하여 냉각된 음용수를 제공하게 된다.In the case of the direct chiller, the cooling pipe (refrigerant pipe) is provided between the discharge part of the purified water filter and the cock of the cooler in the process of supplying raw water supplied through the water pipe line as it is or filtering the purified water with drinking water. ), The purified water can be instantaneously cooled in the course of discharge through the coke to provide cooled drinking water.

그러나, 이러한 직결식 냉수기는 단위 시간당 음용수의 냉각량보다 사용량이 많은 경우, 충분히 냉각되지 못한 음용수를 공급하게 되는 문제점이 있었다. 다시 말해, 직결식 냉수기는 냉각된 음용수를 지속적으로 공급하지 못하는 문제점이 있었다.However, such a direct chiller has a problem in that when the amount of use is greater than the cooling amount of the drinking water per unit time, the drinking water is not sufficiently cooled. In other words, the direct chiller has a problem that can not continuously supply the cooled drinking water.

대한민국 등록실용신안공보 제20-0380921호 "냉온수기용 냉수 연속 공급장치"의 경우, 음용수를 공급하기 위한 저수조가 구성되어 있으나, 냉각방식에 있어서 직결식 냉수기에 해당되며, 단위 시간당 음용수의 냉각량을 증가시키기 위하여 냉수관을 코일형태로 구성하고 있으나, 지속적으로 충분히 냉각된 냉수를 공급하기에는 어려움이 있었다.Republic of Korea Utility Model Publication No. 20-0380921 "Cold water for continuous supply of chilled water heaters", but a water tank for supplying drinking water is configured, but in the cooling method is a direct chiller, the cooling amount of drinking water per unit time In order to increase the cold water pipe in the form of a coil, there was a difficulty in supplying a sufficiently cooled cold water continuously.

한편, 저장식 냉수기의 경우, 수도관로를 통해 공급되는 원수 또는 정수필터로 여과된 물을 저장탱크에 저장한 후, 저장탱크 내부를 냉각하는 방식으로 냉각된 음용수를 제공하게 된다.On the other hand, in the case of the storage chiller, the raw water supplied through the water pipe or the water filtered by the purified water filter is stored in the storage tank, and the cooled drinking water is provided by cooling the inside of the storage tank.

이러한 저장식 냉수기는, 기존의 직결식 냉수기에 비해 많은 양의 냉수를 공급할 수는 있으나, 저장된 냉수를 모두 공급하게 되면 재공급되는 원수를 냉각하기 위하여 많은 시간이 요구될 뿐만 아니라, 이물질이나 벌래 등의 유입, 저장된 물의 장시간 정체 등으로 인해 저장탱크 내부에 저장된 물이 오염되고 세균이 증식하는 등의 문제점이 있었다.Such a storage cold water machine can supply a large amount of cold water compared to a conventional direct chiller, but if all of the stored cold water is supplied, not only a lot of time is required to cool the raw water to be resupply, Due to inflow, prolonged stagnation of stored water, there is a problem that the water stored in the storage tank is contaminated and bacteria grow.

또한, 저장탱크 내부가 결빙점이하로 냉각되는 경우, 저장식 냉수기에서 코크측으로 냉수를 공급하는 공급관이 결빙되거나 막히는 경우가 발생되며, 이로 인해 냉수의 공급량이 줄어들거나 공급자체가 중단되는 문제점이 있었다.
In addition, when the inside of the storage tank is cooled below the freezing point, there is a case in which the supply pipe for supplying cold water to the side of the coke in the storage chiller freezes or is blocked, thereby reducing the supply amount of cold water or stopping the supplier.

대한민국 등록실용신안공보 제20-0380921호 "냉온수기용 냉수 연속 공급장치"Republic of Korea Utility Model Publication No. 20-0380921 "Cold water continuous supply device for cold water heater"

상기와 같은 문제점을 해결하기 위해서, 본 발명은 수도관로 등을 통해 공급되는 원수 또는 정수를 순간적으로 냉각하여 음용수로 공급함에 있어, 냉각수조의 내부에 냉각용 정수필터를 내장하여 음용수의 냉각량을 극대화시킴으로써, 빠르게 냉각된 음용수를 지속적으로 제공할 수 있는 냉각용 정수필터가 내장된 음용수 순간 냉각 장치를 제공하는데 목적이 있다.In order to solve the above problems, the present invention in instant cooling the raw water or purified water supplied through the water pipe, such as to supply the drinking water, by maximizing the cooling amount of the drinking water by the built-in cooling water filter inside the cooling water tank It is an object of the present invention to provide a drinking water instantaneous cooling device with a built-in cooling water filter that can continuously provide rapidly cooled drinking water.

또한, 본 발명은 냉각장치를 이용하여 음용수를 냉각하는 과정에서, 과도한 냉각에 의해 음용수를 공급하는 관로가 결빙되는 것을 미연에 방지할 수 있는 냉각용 정수필터가 내장된 음용수 순간 냉각 장치를 제공하는데 목적이 있다.In addition, the present invention provides a drinking water instantaneous cooling device with a built-in water purification filter for cooling in the process of cooling the drinking water using a cooling device, which can prevent the freezing of the pipeline for supplying the drinking water by excessive cooling. There is a purpose.

이를 위하여, 본 발명은 냉각장치를 통해 저장된 냉각수를 냉각하고, 이 냉각수를 이용하여 음용수관조내의 음용수관코일을 따라 이동하는 음용수의 냉각이 원활히 이루어지도록 함으로써, 상기한 문제점을 모두 해결할 수 있는 냉각용 정수필터가 내장된 음용수 순간 냉각 장치를 제공하는데 목적이 있다.To this end, the present invention by cooling the cooling water stored through the cooling device, by using the cooling water to facilitate the cooling of the drinking water moving along the drinking water pipe coil in the drinking water pipe, for the cooling can solve all of the above problems It is an object of the present invention to provide a drinking water instantaneous cooling device with a built-in water filter.

특히, 본 발명은 냉각수조의 외부벽면을 따라 형성된 냉기회수용 원수냉각코일을 활용하여, 수도관로 등을 통해 공급되는 원수 또는 정수를 1차 냉각한 후, 정수필터나 음용수코일 등으로 공급되도록 함으로써, 냉각수조의 외부로 방출되는 냉기를 회수하여 이용할 수 있으며, 이를 통해 압축기의 효율을 향상시킬 수 있고, 과부하를 방지함은 물론, 에너지의 낭비를 최소화할 수 있는 냉각용 정수필터가 내장된 음용수 순간 냉각 장치를 제공하는데 목적이 있다.
Particularly, the present invention utilizes a cold water cooling coil for cold air recovery formed along the outer wall of the cooling water tank to cool the raw water or purified water supplied through a water pipe, and then, is supplied to a purified water filter or drinking water coil. It is possible to recover and use cold air discharged to the outside of the cooling water tank, which improves the efficiency of the compressor, prevents overload, and minimizes the waste of energy. The purpose is to provide a device.

상기와 같은 목적을 달성하기 위해서, 본 발명에 따른 냉각용 정수필터가 내장된 음용수 순간 냉각 장치는, 내부에 저장된 냉각수의 온도를 설정온도로 냉각하도록 열교환하는 냉매관코일; 상기 냉매관코일의 내부에 구성되고 상기 냉각수와 열교환하여 음용수를 냉각하는 음용수관코일; 및 상기 음용수관코일의 중심부에 구성되고 외부의 원수를 정수하여 상기 음용수관코일로 공급하는 정수필터를 포함하는 냉각수조; 및 상기 냉매관코일로 냉매를 공급하는 냉각장치를 포함한다.In order to achieve the above object, a drinking water instantaneous cooling device with a built-in cooling water filter according to the present invention, the refrigerant pipe coil for heat exchange to cool the temperature of the cooling water stored therein to a set temperature; A drinking water pipe coil configured inside the refrigerant pipe coil and cooling the drinking water by exchanging heat with the cooling water; And a water filter configured at a center of the drinking water pipe coil and supplying external water to the drinking water pipe coil. And a cooling device supplying a refrigerant to the refrigerant pipe coil.

또한, 상기 냉각수조에는, 외부벽면을 따라 코일형태로 형성되는 냉기회수용 원수냉각코일을 더 포함할 수 있다.In addition, the cooling water tank may further include a cold air recovery raw water cooling coil formed in the form of a coil along the outer wall surface.

또한, 상기 냉각수조는, 상기 냉각수를 상하부방향으로 순환시키는 교반펌프를 더 포함할 수 있다.In addition, the cooling water tank may further include a stirring pump for circulating the cooling water in the vertical direction.

또한, 상기 냉각수조의 내부에는, 적어도 하나의 수온센서가 설치되고, 상기 수온센서에서 측정되는 냉각수의 온도가 결빙점 이하인 경우, 상기 냉각장치의 동작을 중단시킬 수 있다.In addition, at least one water temperature sensor is installed inside the cooling water tank, and when the temperature of the cooling water measured by the water temperature sensor is below the freezing point, the operation of the cooling device may be stopped.

또한, 상기 냉각장치는, 상기 냉매관코일에서 열교환된 냉매를 압축하는 압축기; 및 상기 압축기의 온도를 측정하는 온도센서를 포함하고, 상기 온도센서에서 측정된 압축기의 온도가 설정온도 이상인 경우, 상기 압축기의 동작을 중단시킬 수 있다.In addition, the cooling device, a compressor for compressing the refrigerant heat exchanged in the refrigerant pipe coil; And a temperature sensor measuring a temperature of the compressor, and when the temperature of the compressor measured by the temperature sensor is equal to or higher than a set temperature, the operation of the compressor may be stopped.

또한, 상기 냉각장치는, 상기 온도센서에서 측정된 온도에 따라 상기 압축기의 동작이 중단된 경우, 설정시간동안 동작의 중단상태를 유지하도록 제어할 수 있다.
In addition, the cooling apparatus may be controlled to maintain the suspended state for a predetermined time when the operation of the compressor is stopped according to the temperature measured by the temperature sensor.

상기와 같은 해결수단에 의해, 본 발명은 냉각장치를 이용하여 음용수를 냉각하는 과정에서, 냉각수조의 내부에 냉각용 정수필터를 내장하여 음용수의 냉각량을 극대화시킴으로써, 과도한 냉각에 의해 음용수를 공급하는 관로가 결빙되는 것을 미연에 방지 하여, 안정적으로 냉수를 공급할 수 있도록 함은 물론, 냉수의 생산능력을 크게 향상시켜 충분히 냉각된 음용수를 지속적으로 제공할 수 있는 장점이 있다.By the above solution means, in the process of cooling the drinking water by using a cooling device, by embedding a cooling water filter in the cooling water tank to maximize the amount of cooling of the drinking water, to supply the drinking water by excessive cooling By preventing freezing of the pipeline in advance, it is possible to stably supply cold water, and greatly improves the production capacity of cold water, thereby providing continuous cooling water.

또한, 본 발명은 교반펌프를 이용하여 냉각수를 순환시킴으로써, 냉각수조 내부의 냉각수를 순환시켜 냉기가 원활하게 공급되도록 함은 물론, 냉매관코일이 과도하게 냉각되는 것을 방지할 수 있는 효과가 있다.In addition, the present invention by circulating the cooling water using a stirring pump, it is possible to circulate the cooling water in the cooling water tank to smoothly supply the cold air, as well as to prevent excessive cooling of the refrigerant pipe coil.

특히, 본 발명은 냉각수가 저장되는 냉각수조의 공간을 활용하여, 수도관로 등을 통해 공급되는 원수나 온수를 1차적으로 냉각하여 사용함으로써, 냉각수를 냉각하기 위한 압축기의 과동작을 방지하고 효율을 향상시킴으로써, 에너지의 낭비를 최소화할 수 있는 효과가 있다.In particular, the present invention by utilizing the space of the cooling water tank in which the cooling water is stored, by primarily cooling the raw water or hot water supplied through the water pipe, etc., to prevent the over-operation of the compressor for cooling the cooling water and improve the efficiency By doing so, there is an effect to minimize the waste of energy.

또한, 외부공기를 흡입하여 압축기에서 방출되는 열을 신속하게 외부로 배출할 수 있도록 하여, 압축기의 과부하를 미연에 방지할 수 있고, 압축기의 동작이 중단되면 설정시간 내에 재동작하는 것을 방지함으로써, 빈번한 온오프(On-Off)에 따른 압축기의 고장 등을 미연에 방지할 수 있는 효과가 있다.In addition, by sucking the outside air to quickly discharge the heat discharged from the compressor to the outside, it is possible to prevent the overload of the compressor in advance, and to prevent the operation again within the set time when the operation of the compressor is stopped, There is an effect that can prevent the failure of the compressor due to frequent on-off in advance.

따라서, 음용수 공급장치 관련분야, 냉수 공급장치 관련분야, 냉온수기 관련분야 및 정수기 관련분야는 물론, 이와 유사 내지 연관되는 분야에서 제품의 신뢰성 및 경쟁력을 향상시킬 수 있다.
Therefore, it is possible to improve the reliability and competitiveness of products in drinking water supply related fields, cold water supply related fields, cold and hot water heater related fields and water purifier related fields, as well as similar or related fields.

도 1은 본 발명에 의한 냉각용 정수필터가 내장된 음용수 순간 냉각 장치의 일 실시예를 설명하는 구성도이다.
도 2는 도 1의 주요구성을 설명하는 평면도이다.
도 3은 도 1의 교반펌프에 대한 기능을 설명하는 도면이다.
도 4는 본 발명에 의한 냉각용 정수필터가 내장된 음용수 순간 냉각 장치의 다른 일 실시예를 설명하는 구성도이다.
도 5는 도 4의 주요구성을 설명하는 평면도이다.
도 6은 도 4의 냉기회수용 원수냉각코일을 설명하는 측면도이다.
1 is a block diagram illustrating an embodiment of a drinking water instantaneous cooling device having a built-in cooling water filter according to the present invention.
2 is a plan view illustrating the main configuration of FIG. 1.
3 is a view for explaining the function of the stirring pump of FIG.
Figure 4 is a block diagram illustrating another embodiment of the instantaneous drinking water cooling device with a built-in cooling water filter for cooling according to the present invention.
5 is a plan view illustrating the main configuration of FIG. 4.
FIG. 6 is a side view illustrating the cold water recovery coil for cold recovery of FIG. 4.

본 발명에 따른 냉각용 정수필터가 내장된 음용수 순간 냉각 장치에 대한 예는 다양하게 적용할 수 있으며, 이하에서는 첨부된 도면을 참조하여 가장 바람직한 실시 예에 대해 설명하기로 한다.An example of an instantaneous drinking water cooling device having a built-in cooling water filter according to the present invention can be applied in various ways, and will be described below with reference to the accompanying drawings.

도 1은 본 발명에 의한 냉각용 정수필터가 내장된 음용수 순간 냉각 장치의 일 실시예를 설명하는 구성도이고, 도 2는 도 1의 주요구성을 설명하는 평면도이다.1 is a block diagram illustrating an embodiment of a drinking water instantaneous cooling device with a built-in cooling water filter according to the present invention, Figure 2 is a plan view for explaining the main configuration of FIG.

도 1을 참조하면, 음용수 순간 냉각 장치(A)는 냉각수조(100) 및 냉각장치(200)를 포함한다.Referring to FIG. 1, the drinking water instantaneous cooling device A includes a cooling water tank 100 and a cooling device 200.

냉각수조(100)는 내부에 냉각수(CW)가 저장되며, 냉각장치(200)를 이용하여 냉각수(CW)를 냉각하고, 냉각된 냉각수(CW)로 음용수를 냉각하여 공급하기 위한 것으로, 냉매관코일(110), 음용수관코일(120) 및 정수필터(130)를 포함한다. 여기서, 냉각수(CW)는 물 및 부동액 중 적어도 하나를 포함할 수 있다.Cooling water tank 100 is a cooling water (CW) is stored therein, to cool the cooling water (CW) using the cooling device 200, and to supply the cooling water to cool the cooling water (CW), the refrigerant pipe Coil 110, drinking water pipe coil 120 and the water filter 130 is included. Here, the cooling water CW may include at least one of water and an antifreeze.

냉매관코일(110)은 냉매와 냉각수(CW) 간의 열교환이 원활하게 이루어지도록 코일형태로 형성된 것으로, 열교환면적을 증가시키기 위하여, 코일의 외부면에 열교환편 등의 부가구성을 포함할 수 있다.The refrigerant pipe coil 110 is formed in the form of a coil to facilitate heat exchange between the refrigerant and the cooling water CW, and may include an additional configuration such as a heat exchanger piece on the outer surface of the coil in order to increase the heat exchange area.

음용수관코일(120)은 냉매관코일(110)에 의해 냉각된 냉각수(CW)와 원활하게 열교환이 이루어지도록 코일형태로 형성되어 냉매관코일(110)의 내부에 구성된다.The drinking water pipe coil 120 is formed in a coil shape so as to exchange heat smoothly with the cooling water CW cooled by the refrigerant pipe coil 110, and is configured inside the refrigerant pipe coil 110.

또한, 음용수관코일(120)은 정수필터(130)에서 정수된 음용수를 공급받는 정수공급관(121) 및 냉각된 음용수를 코크(Cock)측으로 공급하는 음용수공급관(122)을 포함할 수 있다.In addition, the drinking water pipe coil 120 may include a purified water supply pipe 121 for receiving the purified drinking water from the purified water filter 130 and a drinking water supply pipe 122 for supplying the cooled drinking water to the cock side.

정수필터(130)는 음용수관코일(120)의 중심부에 구성되고, 원수공급관(131)을 통해 외부의 원수를 공급받아 여과하고, 여과된 정수를 정수공급관(121)을 통해 음용수관코일(120)로 공급한다.The purified water filter 130 is configured in the center of the drinking water pipe coil 120, receives external raw water through the raw water supply pipe 131, and filters the filtered purified water through the purified water supply pipe 121. ).

여기서, 정수필터(130)를 음용수관코일(120)의 중심부에 구성하는 것은, 음용수공급관(122)을 통해 공급되는 냉수(냉각된 음용수)의 공급량을 증가시키기 위한 것으로, 정수필터(130)에서 원수의 여과함과 동시에 냉각시키게 되면, 냉각수조(100) 내의 냉각수(CW)를 과도하게 냉각하지 않고서도, 충분한 양의 냉수를 지속적으로 공급할 수 있게 된다.Here, the configuration of the purified water filter 130 in the center of the drinking water pipe coil 120 is to increase the supply amount of the cold water (cooled drinking water) supplied through the drinking water supply pipe 122, in the purified water filter 130 When the raw water is filtered and cooled at the same time, a sufficient amount of cold water can be continuously supplied without excessively cooling the cooling water CW in the cooling water tank 100.

다시 말해, 음용수관코일(120)에 의해 공급되는 냉수의 양이 적을 경우, 냉수의 공급량을 증가시키기 위해서는 냉각장치(200)를 통해 냉각수(CW)를 과도하게 냉각해야만 하며, 이로 인해 음용수관코일(120)에 결빙현상이 발생하는 등의 문제점이 발생할 수 있으나, 본 발명의 음용수 순간 냉각 장치(A)는 냉각수(CW)에 의해 냉각되는 음용수의 양을 증가시키는 방법을 통해, 냉각수(CW)의 온도를 결빙점 부근에서 제어함으로써, 냉각수(CW)의 과도한 냉각에 따른 문제점을 미연에 방지할 수 있는 것이다.In other words, when the amount of cold water supplied by the drinking water pipe coil 120 is small, in order to increase the supply amount of cold water, the cooling water (CW) must be excessively cooled through the cooling device 200, thereby drinking water pipe coil Problems such as freezing may occur in the 120, but the instantaneous drinking water cooling device A of the present invention uses the cooling water CW through a method of increasing the amount of the drinking water cooled by the cooling water CW. By controlling the temperature in the vicinity of the freezing point, it is possible to prevent the problem due to excessive cooling of the cooling water CW in advance.

이러한 목적으로 사용되는 정수필터(130)는 내부에서 여과되는 원수를 보다 원활히 냉각하기 위하여, 열전도율이 높은 금속재질로 구성함으로써, 냉각수(CW)로부터 냉기가 보다 용이하게 유입되도록 할 수 있다.The purified water filter 130 used for this purpose may be made of a metal material having a high thermal conductivity in order to cool the raw water filtered therein more smoothly, thereby allowing cold air to be easily introduced from the cooling water CW.

냉각장치(200)는 냉매관코일(110)로 냉매를 공급하는 것으로, 냉각수조(100) 내에서 열교환되어 기화된 고온의 냉매를 압축하는 압축기(210)와, 압축기(210)에서 액화된 고온의 냉매의 열을 배출시키고 냉매관코일(110)로 재공급하는 방열부(220)를 포함할 수 있다.The cooling device 200 supplies a refrigerant to the refrigerant pipe coil 110, and compresses the refrigerant of high temperature vaporized by heat exchange in the cooling water tank 100, and the high temperature liquefied by the compressor 210. It may include a heat dissipation unit 220 for discharging the heat of the refrigerant of the refrigerant supply to the refrigerant pipe coil (110).

또한, 냉각장치(200)는 압축기(210) 및 방열부(220)에서 방출되는 열을 외부로 배출시키도록 공기를 순환시키는 유입팬(231a)이 구성된 유입덕트(231) 및 유출팬(232a)이 구성된 유출덕트(232)를 더 포함할 수 있다.In addition, the cooling apparatus 200 includes an inlet duct 231 and an outlet fan 232a configured with an inlet fan 231a for circulating air to discharge the heat emitted from the compressor 210 and the heat dissipation unit 220 to the outside. The configured outflow duct 232 may be further included.

또한, 음용수 순간 냉각 장치(A)는, 냉각수조(100)의 하부에 도 3에 나타난 바와 같이 냉각수(CW)를 상하부방향으로 순환시키는 교반펌프(300)를 더 구성할 수 있다.In addition, the drinking water instantaneous cooling device (A) may further comprise a stirring pump 300 for circulating the cooling water (CW) in the upper and lower directions, as shown in Figure 3 in the lower portion of the cooling water tank (100).

예를 들어, 냉매관코일(110)에 의해 냉각수조(100)의 냉각수(CW)가 과도하게 냉각될 경우, 냉매관코일(110)의 주위에서 결빙현상이 발생되어 얼음(I)이 생성될 수 있다. 이러한 얼음(I)이 과도하게 발생할 경우, 냉각수조(100)에 저장된 냉각수(CW) 흐름을 저해할 뿐만 아니라, 음용수관코일(120)이 결빙되어 냉수를 공급하지 못하는 경우가 발생할 수 있다.For example, when the cooling water CW of the cooling water tank 100 is excessively cooled by the refrigerant pipe coil 110, freezing occurs around the refrigerant pipe coil 110 to generate ice (I). Can be. When such ice (I) occurs excessively, not only may inhibit the flow of the cooling water (CW) stored in the cooling water tank 100, the drinking water pipe coil 120 is frozen may not be able to supply the cold water.

따라서, 교반펌프(300)를 이용하여 냉각수(CW)의 순환을 원활하게 하면, 냉각수조(100) 내에서 발생되는 결빙현상을 최소화할 수 있으며, 음용수관코일(120)의 결빙도 방지할 수 있다. Therefore, by smoothly circulating the cooling water (CW) using the stirring pump 300, it is possible to minimize the freezing phenomenon generated in the cooling water tank 100, and also to prevent the freezing of the drinking water pipe coil (120). have.

한편, 냉각장치(200)에 의해 냉각수조(100)로 공급되는 냉기의 일부는 외부로 방출될 수 있으며, 이는 에너지효율의 낭비를 초래할 수 있다.On the other hand, a portion of the cold air supplied to the cooling water tank 100 by the cooling device 200 may be discharged to the outside, which may lead to waste of energy efficiency.

이를 보상하기 위해서는, 냉각장치(200)를 통해 계속적으로 냉기를 공급해야 하는 바, 냉각장치(200)가 무리하게 동작될 경우 소손이 발생할 수 있으며, 냉각장치(200)의 과도한 동작에 의해 전기에너지의 소모가 증가될 수 있다.In order to compensate for this, it is necessary to continuously supply cold air through the cooling device 200, and if the cooling device 200 is excessively operated, burnout may occur, and electrical energy may be caused by excessive operation of the cooling device 200. The consumption of can be increased.

본 발명에서는 이러한 문제점을 해결하기 위하여, 냉각수조(100) 측면, 상부면 및 하부면 중 적어도 일측면에는 냉각수조(100)의 내부냉기가 외부로 방출되는 것을 방지하는 보온층(400)를 구성할 수 있다.In the present invention, in order to solve such a problem, at least one side of the cooling water tank 100 side, the upper surface and the lower surface is configured an insulating layer 400 to prevent the internal cold air of the cooling water tank 100 is discharged to the outside. can do.

또한, 냉매관코일(110) 주위에서 결빙현상이 발생하더라도 음용수관코일(120)에는 결빙현상이 발생하지 않도록 냉각수(CW)의 온도를 조절할 필요가 있다.In addition, even if freezing occurs around the refrigerant pipe coil 110, it is necessary to adjust the temperature of the cooling water CW so that freezing does not occur in the drinking water pipe coil 120.

따라서, 본 발명의 음용수 순간 냉각 장치(A)는, 냉매관코일(110)과 음용수관코일(120) 사이에 적어도 하나의 수온센서(500)를 설치하고, 수온센서(500)에서 측정되는 냉각수(CW)의 온도가 결빙점보다 낮은 경우 또는 결빙점 이하로 설정된 설정온도보다 낮은 경우, 냉각장치(200)의 동작을 중단시킬 수 있다.Therefore, in the instantaneous drinking water cooling device A of the present invention, at least one water temperature sensor 500 is installed between the refrigerant pipe coil 110 and the drinking water pipe coil 120, and the coolant measured by the water temperature sensor 500. When the temperature of the CW is lower than the freezing point or lower than the set temperature set below the freezing point, the operation of the cooling apparatus 200 may be stopped.

또한, 수온센서(500)에서 측정된 냉각수조(100)의 온도가 설정된 온도(공급하고자 하는 냉수의 온도)보다 높은 경우, 냉각장치(200)가 구동되도록 할 수 있음은 물론이다.In addition, when the temperature of the cooling water tank 100 measured by the water temperature sensor 500 is higher than the set temperature (temperature of the cold water to be supplied), the cooling apparatus 200 may be driven.

한편, 냉각장치(200)의 압축기(210)가 과도하게 동작되어 많은 양의 열이 발생하는 경우, 냉각장치(200)가 손상되는 등의 문제점이 발생할 수 있다.On the other hand, when the compressor 210 of the cooling device 200 is excessively operated to generate a large amount of heat, a problem such as damage to the cooling device 200 may occur.

이를 방지하기 위하여, 본 발명의 냉각장치(200)는 압축기(210)의 일측에 온도센서(211)를 설치하고, 온도센서(211)에서 측정된 압축기(210)의 온도가 설정온도(예를 들어, 70℃) 이상인 경우, 압축기(210)의 동작을 중단시킬 수 있다.In order to prevent this, the cooling device 200 of the present invention installs a temperature sensor 211 on one side of the compressor 210, the temperature of the compressor 210 measured by the temperature sensor 211 is a set temperature (for example For example, 70 ° C.) or more, the operation of the compressor 210 may be stopped.

또한, 냉각장치(200)가 온도센서(211) 및 수온센서(500) 등에 의해 과부하상태에서 동작의 온오프(On-Off)가 빈번하게 반복되는 경우, 압축기(210)의 수명이 단축되고 고장이 쉽게 발생할 수 있다.In addition, when the on-off operation of the cooling device 200 is frequently repeated in the overload state by the temperature sensor 211 and the water temperature sensor 500, the life of the compressor 210 is shortened and failure occurs. This can easily happen.

이를 방지하기 위하여, 본 발명의 냉각장치(200)는 온도센서(211)에서 측정된 온도에 따라 압축기(210)의 동작이 중단된 경우, 설정시간동안(예를 들어, 30분) 동작의 중단상태를 유지하도록 제어할 수 있다. 이와 같은 압축기(210)의 재동작 방지설정은 수온센서(500)에 의한 경우에도 동일 내지 유사하게 적용할 수 있음은 물론이다.In order to prevent this, the cooling apparatus 200 of the present invention stops the operation for a set time (for example, 30 minutes) when the operation of the compressor 210 is stopped according to the temperature measured by the temperature sensor 211. You can control to maintain state. The reactivation prevention setting of the compressor 210 may be similarly applied to the case of the water temperature sensor 500.

도 4는 본 발명에 의한 냉각용 정수필터가 내장된 음용수 순간 냉각 장치의 다른 일 실시예를 설명하는 구성도이고, 도 5는 도 4의 주요구성을 설명하는 평면도이며, 도 6은 도 4의 냉기회수용 원수냉각코일을 설명하는 측면도이다.Figure 4 is a block diagram illustrating another embodiment of the instantaneous drinking water cooling device with a built-in cooling water filter for cooling according to the present invention, Figure 5 is a plan view for explaining the main configuration of Figure 4, Figure 6 is a It is a side view explaining cold water recovery coil for cold air recovery.

도 4를 참조하면, 본 발명의 음용수 순간 냉각 장치(A)는, 냉각수조(100)의 외부벽면에 냉기회수용 원수냉각코일(600)을 더 구성할 수 있다.Referring to FIG. 4, the instantaneous drinking water cooling device A of the present invention may further configure a cold water recovery raw water cooling coil 600 on the outer wall surface of the cooling water tank 100.

냉기회수용 원수냉각코일(600)은 외부에서 공급되는 원수를 1차냉각하기 위한 것으로, 냉각수조(100)의 외부벽면을 따라 코일형태로 구성될 수 있다. 도 6은, 냉기회수용 원수냉각코일(600)이 냉각수조(100)의 외부벽면을 따라 구성되어 있는 상태를 나타낸 것이다.The cold air recovery raw water cooling coil 600 is for primary cooling of raw water supplied from the outside, and may be configured in a coil form along the outer wall surface of the cooling water tank 100. 6 shows a state in which the cold air recovery raw water cooling coil 600 is configured along the outer wall surface of the cooling water tank 100.

또한, 냉기회수용 원수냉각코일(600)은 원수가 공급되는 원수유입관(610)을 포함할 수 있으며, 냉각된 원수는 원수유출관(620)을 통해 원수공급관(131)으로 공급될 수 있다.In addition, the cold air recovery raw water cooling coil 600 may include a raw water inlet pipe 610 to supply the raw water, the cooled raw water may be supplied to the raw water supply pipe 131 through the raw water outlet pipe 620. .

따라서, 1차냉각된 원수를 정수필터(130)에서 여과 및 냉각하게 되므로, 냉각된 음용수의 공급량이 증가되더라도, 충분히 냉각된 음용수를 지속적으로 제공할 수 있다.Therefore, since the primary cooled raw water is filtered and cooled by the purified water filter 130, even if the supply amount of the cooled drinking water is increased, the sufficiently cooled drinking water can be continuously provided.

더불어, 냉기회수용 원수냉각코일(600)은 수조의 외부벽면을 따라 구성되기 때문에, 음용수 순간 냉각 장치(A)의 외부로 배출되는 냉기를 흡수하여 원수 또는 온수를 냉각할 수 있다.In addition, since the cold air recovery raw water cooling coil 600 is configured along the outer wall surface of the water tank, the cold water discharged to the outside of the instantaneous drinking water cooling device A may be absorbed to cool the raw water or the hot water.

따라서, 냉매관조(100)에서 외부로 방출되는 냉기를 최소화하여 압축기의 효율을 향상시킬 수 있고, 과부하를 방지함은 물론, 에너지 효율을 향상시킬 수 있다.Therefore, by minimizing the cold air discharged from the refrigerant conduit 100 to improve the efficiency of the compressor, it is possible to prevent overload, as well as to improve the energy efficiency.

이상에서 본 발명에 의한 냉각용 정수필터가 내장된 음용수 순간 냉각 장치에 대하여 설명하였다. 이러한 본 발명의 기술적 구성은 본 발명이 속하는 기술분야의 당업자가 본 발명의 그 기술적 사상이나 필수적 특징을 변경하지 않고서 다른 구체적인 형태로 실시될 수 있다는 것을 이해할 수 있을 것이다.The drinking water instantaneous cooling device in which the cooling water filter for cooling according to the present invention is incorporated has been described above. It will be understood by those skilled in the art that the technical features of the present invention may be embodied in other specific forms without departing from the spirit or essential characteristics thereof.

그러므로 이상에서 기술한 실시예들은 모든 면에서 예시적인 것이며, 한정적인 것이 아닌 것으로서 이해되어야 하고, 본 발명의 범위는 전술한 상세한 설명보다는 후술하는 특허청구범위에 의하여 나타내어지는 것이므로, 특허청구범위의 의미 및 범위 그리고 그 등가개념으로부터 도출되는 모든 변경 또는 변형된 형태가 본 발명의 범위에 포함되는 것으로 해석되어야 한다.
Therefore, it is to be understood that the embodiments described above are intended to be illustrative, and not restrictive, in all respects, and that the scope of the invention is indicated by the appended claims rather than the foregoing description, And all equivalents and modifications that come within the meaning and range of equivalency of the claims are to be embraced within their scope.

A : 음용수 순간 냉각 장치
100 : 냉각수조 110 : 냉매관코일
120 : 음용수관코일 121 : 정수공급관
122 : 음용수공급관
130 : 정수필터 131 : 원수공급관
200 : 냉각장치 210 : 압축기
211 : 온도센서 220 : 방열부
300 : 교반펌프 400 : 보온층
500 : 수온센서
600 : 냉기회수용 원수냉각코일 610 : 원수유입관
620 : 원수유출관
A: Drinking Water Instant Chiller
100: cooling water tank 110: refrigerant pipe coil
120: drinking water pipe coil 121: purified water supply pipe
122: drinking water supply pipe
130: water filter 131: raw water supply pipe
200: cooling device 210: compressor
211: temperature sensor 220: heat dissipation unit
300: stirring pump 400: thermal insulation layer
500: water temperature sensor
600: raw water cooling coil for cold recovery 610: raw water inlet pipe
620: Raw water outflow pipe

Claims (6)

내부에 저장된 냉각수의 온도를 설정온도로 냉각하도록 열교환하는 냉매관코일;
상기 냉매관코일의 내부에 구성되고 상기 냉각수와 열교환하여 음용수를 냉각하는 음용수관코일;
상기 음용수관코일의 중심부에 구성되고 외부의 원수를 정수하여 상기 음용수관코일로 공급하는 정수필터를 포함하는 냉각수조; 및
상기 냉매관코일로 냉매를 공급하는 냉각장치;를 포함하고,
상기 냉각수조에는,
외부벽면을 따라 코일형태로 형성되는 냉기회수용 원수냉각코일을 더 포함하는 것을 특징으로 하는 냉각용 정수필터가 내장된 음용수 순간 냉각 장치.
A refrigerant pipe coil configured to exchange heat to cool the temperature of the coolant stored therein to a predetermined temperature;
A drinking water pipe coil configured inside the refrigerant pipe coil and cooling the drinking water by exchanging heat with the cooling water;
A cooling water tank configured at a center of the drinking water pipe coil and including a water filter for purifying external raw water to supply the drinking water pipe coil; And
And a cooling device supplying a refrigerant to the refrigerant pipe coil.
In the cooling water tank,
Drinking water instantaneous cooling device with a built-in cooling water filter, characterized in that it further comprises a cold water recovery raw water cooling coil is formed in the form of a coil along the outer wall.
삭제delete 제 1항에 있어서,
상기 냉각수조는,
상기 냉각수를 상하부방향으로 순환시키는 교반펌프를 더 포함하는 것을 특징으로 하는 냉각용 정수필터가 내장된 음용수 순간 냉각 장치.
The method according to claim 1,
The cooling water tank,
Drinking water instantaneous cooling device with a built-in cooling water filter, characterized in that it further comprises a stirring pump for circulating the cooling water in the vertical direction.
제 1항에 있어서,
상기 냉각수조의 내부에는,
적어도 하나의 수온센서가 설치되고,
상기 수온센서에서 측정되는 냉각수의 온도가 결빙점 이하인 경우, 상기 냉각장치의 동작을 중단시키는 것을 특징으로 하는 냉각용 정수필터가 내장된 음용수 순간 냉각 장치.
The method according to claim 1,
Inside the cooling water tank,
At least one water temperature sensor is installed,
When the temperature of the cooling water measured by the water temperature sensor is below the freezing point, drinking water instantaneous cooling device with a built-in cooling water filter, characterized in that the operation of the cooling device is stopped.
제 1항에 있어서,
상기 냉각장치는,
상기 냉매관코일에서 열교환된 냉매를 압축하는 압축기; 및
상기 압축기의 온도를 측정하는 온도센서를 포함하고,
상기 온도센서에서 측정된 압축기의 온도가 설정온도 이상인 경우, 상기 압축기의 동작을 중단시키는 것을 특징으로 하는 냉각용 정수필터가 내장된 음용수 순간 냉각 장치.
The method according to claim 1,
The cooling device includes:
A compressor for compressing the refrigerant heat exchanged in the refrigerant pipe coil; And
It includes a temperature sensor for measuring the temperature of the compressor,
Drinking water instantaneous cooling device with a built-in cooling water filter, characterized in that for stopping the operation of the compressor when the temperature of the compressor measured by the temperature sensor is higher than the set temperature.
제 5항에 있어서,
상기 냉각장치는,
상기 온도센서에서 측정된 온도에 따라 상기 압축기의 동작이 중단된 경우, 설정시간동안 동작의 중단상태를 유지하도록 제어하는 것을 특징으로 하는 냉각용 정수필터가 내장된 음용수 순간 냉각 장치.
6. The method of claim 5,
The cooling device includes:
When the operation of the compressor is stopped according to the temperature measured by the temperature sensor, drinking water instantaneous cooling device with a built-in cooling water filter, characterized in that the control to maintain the stopped state for a set time.
KR1020120121354A 2012-10-30 2012-10-30 Drinking water instantaneous cooling equipment built in water purifying filter for cooling KR101383022B1 (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105241148A (en) * 2015-11-04 2016-01-13 比赫电气(太仓)有限公司 Efficient environment-friendly explosion-proof low-pressure water cooling system
KR20190058061A (en) * 2017-11-21 2019-05-29 코스맥스 주식회사 Apparatus for filtering a perfume and Apparatus for manufacturing a perfume including the same
KR20200001132A (en) * 2018-06-27 2020-01-06 이연섭 Rapid cooling system for water purifier with efficient cooling function

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR100298410B1 (en) * 1998-02-19 2001-10-25 구자홍 Apparatus for controlling operation of compressor
KR100594694B1 (en) * 2004-07-16 2006-06-30 주식회사 위닉스 clean water system
KR20100127506A (en) * 2009-05-26 2010-12-06 주식회사 물사랑 The drinking water cooling apparatus for cooling cistern where the underwater pump is had built-in
KR20110049959A (en) * 2009-11-06 2011-05-13 주식회사 하이필 Cooling system for drinking water

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR100298410B1 (en) * 1998-02-19 2001-10-25 구자홍 Apparatus for controlling operation of compressor
KR100594694B1 (en) * 2004-07-16 2006-06-30 주식회사 위닉스 clean water system
KR20100127506A (en) * 2009-05-26 2010-12-06 주식회사 물사랑 The drinking water cooling apparatus for cooling cistern where the underwater pump is had built-in
KR20110049959A (en) * 2009-11-06 2011-05-13 주식회사 하이필 Cooling system for drinking water

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105241148A (en) * 2015-11-04 2016-01-13 比赫电气(太仓)有限公司 Efficient environment-friendly explosion-proof low-pressure water cooling system
KR20190058061A (en) * 2017-11-21 2019-05-29 코스맥스 주식회사 Apparatus for filtering a perfume and Apparatus for manufacturing a perfume including the same
KR102075362B1 (en) * 2017-11-21 2020-02-10 코스맥스 주식회사 Apparatus for filtering a perfume and Apparatus for manufacturing a perfume including the same
KR20200001132A (en) * 2018-06-27 2020-01-06 이연섭 Rapid cooling system for water purifier with efficient cooling function
KR102098138B1 (en) * 2018-06-27 2020-04-07 이연섭 Rapid cooling system for water purifier with efficient cooling function

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