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Small Chilled Water System

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Small Chilled Water System

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In the production process of many industrial sectors, a large amount of waste heat is generated, which needs to be transferred to the natural environment using heat transfer media in a timely manner to ensure the normal operation of the production process. Because natural water has excellent heat transfer properties, is cheap, and is rich in resources, it is used as a heat transfer medium for industrial waste heat. It is called cooling water in industrial production. Industrial cooling water is the largest user of industrial water in various countries. In addition to increasing The physical and chemical properties of cooling water do not change significantly outside the temperature. If appropriate cooling measures are taken to form a recycling system, it is an important way to save industrial water. A small chilled water system is a water supply system in which cooling water is exchanged for hot water, cooled, and recycled. It includes open and closed types and is composed of cooling equipment, water pumps, and pipes.

Cooling principle of small chilled water system:

The operation of the small chilled water system is through three interrelated systems: refrigerant circulation system, water circulation system, and electrical automatic control system.

 

Small Chilled Water System

 

The principle of small chilled water system

The liquid refrigerant in the evaporator absorbs heat from the water and begins to evaporate. A certain temperature difference is formed between the refrigerant and the water. The liquid refrigerant also completely evaporates into a gaseous state and is sucked and compressed by the compressor (pressure and temperature increase). The gaseous refrigerant absorbs heat through the condenser (air-cooled/water-cooled) and condenses into a liquid. After being throttled by the thermal expansion valve (or capillary tube), it becomes low-temperature and low-pressure refrigerant and enters the evaporator to complete the refrigerant cycle process.

 

Small Chilled Water System

 

The basic components of small chilled water system:

1. Condenser: During the refrigeration process, the condenser plays the role of outputting heat energy and condensing the refrigerant. After the high-pressure superheated steam discharged from the refrigeration compressor enters the condenser, all the heat absorbed during the working process, including the heat absorbed from the evaporator and refrigeration compressor and in the pipeline, is transferred to the surrounding medium (water or air) is taken away; the high-pressure superheated vapor of the refrigerant condenses back into liquid. (According to different cooling media and cooling methods, condensers can be divided into three categories: water-cooled condensers, air-cooled condensers, and evaporative condensers.)

2. Compressor: The compressor is the core component of the entire refrigeration system and the source of power for refrigerant compression. Its function is to convert the input electrical energy into mechanical energy and compress the refrigerant.

3. Thermal expansion valve: The thermal expansion valve is not only a flow regulating valve in a small chiller refrigeration system, but also a throttle valve in the refrigeration equipment. It is installed between the drying filter and the evaporator in the refrigeration equipment. Its function The temperature sensing bag is wrapped at the outlet of the evaporator. Its main function is to throttle and reduce the pressure of high-pressure and normal-temperature refrigerant liquid when flowing through the thermal expansion valve, and turn it into low-temperature and low-pressure refrigerant wet vapor (mostly liquid, a small part is steam) into the evaporator, and vaporizes in the evaporator. Absorb heat to achieve the purpose of cooling.

4. Evaporator: The evaporator is a heat exchange device that relies on the evaporation (actually boiling) of the refrigerant liquid to absorb the heat of the cooled medium. Its function in the refrigeration system is to absorb heat (or output cooling capacity). In order to ensure that the evaporation process can proceed stably and lastingly, the evaporated gas must be continuously pumped away by a refrigeration compressor to maintain a certain evaporation pressure.

5. Liquid receiver: The liquid receiver is installed after the condenser and is directly connected to the drain pipe of the condenser. The refrigerant liquid of the condenser should flow into the liquid receiver unobstructed, so that the cooling area of the condenser can be fully utilized. On the other hand, when the heat load of the evaporator changes, the demand for refrigerant liquid also changes. At that time, the liquid receiver plays the role of adjusting and storing refrigerant. For small chiller refrigeration equipment systems, liquid receivers are often not installed, but condensers are used to adjust and store refrigerant.

6. Filter dryer: In the refrigeration cycle of a small chiller, moisture and dirt (oil, iron filings, copper filings) must be prevented from entering. The main source of moisture is the newly added refrigerant and the trace moisture contained in the lubricating oil. , or moisture caused by air entering during system maintenance. If the water in the system is not completely removed, when the refrigerant passes through the throttle valve (thermal expansion valve or capillary tube), the water will sometimes solidify into ice due to the drop in pressure and temperature, blocking the passage and affecting the normal operation of the refrigeration device. Therefore, a filter drier must be installed in a small chiller refrigeration system.

7. Refrigerant: Most small industrial chillers used in modern industry use R22 or R12 as the refrigerant. Refrigerant is the flowing working fluid in the refrigeration system. Its main function is to carry heat and absorb and release heat when its state changes.

 


 

Wir bieten die Entwicklung und Herstellung kompletter Temperaturkontrollsysteme an. Von Standardmodellen bis zu kompletten kundenspezifischen Produkten bis hin zu 900 Tonnen. Wir haben uns auf den Kundenservice spezialisiert und sind bestrebt, jedem Kunden zu helfen, das optimale Temperaturkontrollsystem für seinen spezifischen Bedarf zu finden.

Wir bieten maßgeschneiderte Lösungen, die nicht dem Standard entsprechen. Es sind sowohl einzelne Kühlaggregate als auch kombinierte Kühl- und Heizaggregate erhältlich.

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Kühlung Kaltwassersätze                                                                                                     

 

Umwälzkühler

Rückkühler / Umwälzkühler

(Benutzerdefinierte Designs)

Die Kältemaschine kann in verschiedenen Industrien und Labors eingesetzt werden und unterstützt kundenspezifische Designs.

 

 

Temperaturbereich Serie -25°C ~ +30°C -45°C ~ +30°C Reihe Serie -60°C ~ -20°C Serie -80°C ~ -20°C Serie -120°C ~ -70°C
Kühlleistung0,8 ~ 30kW0,75 ~ 12kW0,4 ~ 6kW0,2 ~ 6kW0,3 ~ 5kW
Hinweis: Jeder Temperaturbereich von -150℃ ~ +350℃ und jede Kühlleistung kann angepasst werden

 


 

Präzisionskältemaschinen / KleinkältemaschinenKaltwassersätze / Kleinkaltwassersätze

(Benutzerdefinierte Designs)

Die Kältemaschine kann in verschiedenen Industrien und Labors eingesetzt werden und unterstützt kundenspezifische Designs.

 

 

Temperaturbereich -18°C ~ +30°C +5°C ~ +35°C Reihe
Kühlleistung0,35 ~ 0,9kW1,8 ~ 50kW
Hinweis: Jeder Temperaturbereich von -150℃ ~ +350℃ und jede Kühlleistung kann angepasst werden

 


 

Niedertemperaturkühler

Niedertemperatur-Kühlgeräte

(Benutzerdefinierte Designs)

Wir haben uns auf die Herstellung von Niedertemperaturkältemaschinen mit einem Temperaturregelbereich von bis zu -150°C spezialisiert, die den Kühlbedarf verschiedener Branchen decken.

 

 

Temperaturbereich Serie -25°C ~ -5°C Serie -45°C ~ -10°C Serie -60°C ~ -10°C Serie -80°C ~ -30°CSerie -110°C ~ -50°C Serie -150°C ~ -110°C
Kühlleistung12 ~ 360kW6 ~ 180kW6 ~ 180kW4 ~ 180kW2 ~ 120kW2,5 ~ 11kW
Hinweis: Jeder Temperaturbereich von -150℃ ~ +350℃ und jede Kühlleistung kann angepasst werden

 


HALBLEITER-KÜHLGERÄT

 

Hochtemperatur-Kühlgeräte

(Benutzerdefinierte Designs)

Die Kältemaschine kann in verschiedenen Industrien und Labors eingesetzt werden und unterstützt kundenspezifische Designs.

 

 

Temperaturbereich +5°C ~ +40°C -25°C ~ +40°C -45°C ~ +40°C -80°C ~ +80°C -100°C ~ +80°C
Kühlleistung6 ~ 40kW2 ~ 15kW1 ~ 8kW0,6 ~ 3kW1,5 ~ 3kW
Hinweis: Jeder Temperaturbereich von -150℃ ~ +350℃ und jede Kühlleistung kann angepasst werden

 

 

Kühlen und Heizen Kaltwassersätze                                                                            

 

Kühlen und Heizen Kaltwassersätze

(Benutzerdefinierte Designs)

Temperaturregelbereich: -120°C bis +350°C

Kühl- und Heizungsthermostate, die in verschiedenen Industriezweigen weit verbreitet sind.

 

Temperaturbereich Serie -10 ~ +150°C Serie -25 ~ +200°C Serie -25 ~ +300°C Serie -45 ~ +250°C Serie -45 ~ +300°C Serie -60 ~ +250°C Serie -60 ~ +300°C Serie -70 ~ +250°C Serie -80 ~ +250°CSerie -90 ~ +250°C Serie -100 ~ +100°C
Kühlleistung1,5 ~ 15kW1 ~ 200kW1 ~ 200kW0,45 ~ 200kW0,9 ~ 25kW0,25 ~ 60kW0,75 ~ 25kW0,4 ~ 15kW0,3 ~ 80kW0,2 ~ 80kW0,45 ~ 80kW
Hinweis: Jeder Temperaturbereich von -150℃ ~ +350℃ und jede Kühlleistung kann angepasst werden

 


 

Kühlgeräte mit Rücklaufheizung

(Benutzerdefinierte Designs)

Temperaturregelbereich: -45°C bis +250°C

 

Temperaturbereich Serie -25°C ~ +200°C Serie -45°C ~ +250°C
Kühlleistung1 ~ 15kW0,25 ~ 15kW
Hinweis: Jeder Temperaturbereich von -150℃ ~ +350℃ und jede Kühlleistung kann angepasst werden

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