Water Cooled Chiller System
What is water cooled chiller system?
A water cooled chiller system is a type of chiller that removes heat from it to cool water used in projects and industrial structures and re-enters the operating cycle. In effect, chillers move heat from a space that needs temperature control to another space. A chiller is therefore not a means of generating cold, but a means of dissipating heat, whose task is to facilitate the transfer of unwanted and unwanted heat caused by activity to a place outside the system.
Cooling towers are specially designed for water cooled chiller system. Because the condenser of the water cooled chiller system uses water as a stimulating and cooling material. The efficiency of the water cooled chiller system increases because the wetted surface is more successful at transferring heat and also doing work of compression at wetter temperatures.
How does water cooled chiller system work?
The water cooled chiller system comes into play during the evaporation process, the water and gas produced by the machine is taken to the evaporator and collects all the unwanted heat on the way, then returns to the evaporator and stores the heat energy obtained. After that, the refrigerant collects this heat and mobilizes it into the condensate, that is, the condenser sends all the collected heat to the cooling tower, and finally the hot air will pass through the cooling coil to dissipate the heat into the atmosphere.
The first stage:
The starting point of this cycle is where the water from the production process enters the evaporator to enter the cooling cycle.
During this part of the cycle, the heat absorbed by the refrigerant first occurs in the form of a phase change from liquid to gas. As the refrigerant absorbs heat from the water, the temperature of the environment in contact with this part drops, so the water leaves cooler. This water enters the fan coil and brings the cool air to the desired space.
In fact, the evaporator is a place where, in addition to the current one, it participates in another cycle, which is located between the evaporator and the water outlet of the cooling unit. In fact, hot water enters the chiller evaporator, where it is cooled and then pumped throughout the building to where it is needed.
second stage:
Gaseous refrigerant reaches the gas phase in a pre-liquid state before entering the compressor. In the compressor, the gas condenses, increasing the temperature and pressure so that the next high-pressure stage can be passed. The increase in pressure and temperature as it leaves the compressor is important because the refrigerant needs to release heat from inside the condenser, so it must carry enough heat to the condenser.
Another key function of the compressor is to draw refrigerant into the evaporator at the right time to keep the pressure inside the evaporator high enough to absorb heat again.
The third phase:
The hot gas enters the condenser where the gaseous refrigerant is converted to a saturated high pressure liquid. This is a constant pressure process.
Since the condenser exists in another cycle between the cooling towers, the water enters the cooling tower after it has increased in temperature. Because the main task of the cooling tower in the water cooled chiller system is to cool the consumed water while the condenser uses this water as its driving material.
Where the excess heat of the water is lost, the water temperature is restored to the desired low temperature. The heating process we mentioned earlier takes place in the condenser, releasing the gaseous refrigerant from the heat itself, which is the source of heat in question, which needs to be removed by a cooling tower. In this way, the water entering the cooling tower from the condenser contacts the air flow, transfers heat to the air, and then returns to the condenser.
The fourth stage:
The expansion valve is the last stage of the refrigerant, these processes take place with the refrigerant in the expansion valve causing the refrigerant to become a mixture of liquid and gas, the same compound re-enters the evaporator to resume the cycle, hot water re-enters from the other direction Evaporator.
The water cooled chiller system is used in hospitals, airports, manufacturing plants, industrial plants, shopping malls, etc., all of which are carried out under the premise of satisfying water. The problem with water cooled chiller systems is that they use a lot of water, are not suitable for use in water-scarce areas, and the water supply has its own cost.
Soluções personalizadas para o seu negócio
Chillers de baixa temperatura (arrefecidos a água e a ar)
Gama de controlo de temperatura: -150°C a -5°C
Somos especializados na produção de refrigeradores de baixa temperatura com uma gama de controlo de temperatura tão baixa como -150°C, que pode satisfazer as necessidades de refrigeração de diferentes indústrias.
Faixa de temperatura | Série -25°C ~ -5°C | Série -45°C ~ -10°C | Série -60°C ~ -10°C | Série -80°C ~ -30°C | Série -110°C ~ -50°C |
Capacidade de arrefecimento | até 360kW | até 360kW | até 360kW | até 270kW | até 180kW |
Chillers de recirculação (Arrefecimento a água e ar)
Gama de controlo de temperatura: -120°C a +30°C
Nosso resfriador de recirculação adota tecnologia de refrigeração de baixa temperatura, a temperatura é tão baixa quanto -120 ℃ e vários acessórios são personalizáveis.
Faixa de temperatura | Série -25°C ~ +30°C | Série -45°C ~ +30°C | Série -60°C ~ -20°C | Série -80°C ~ -20°C | Série -120°C ~ -70°C |
Capacidade de arrefecimento | até 38kW | até 12kW | até 7,2kW | até 7,2kW | até 8,6kW |
Refrigeradores de temperatura ambiente / Refrigeradores pequenos
Gama de controlo de temperatura: +5°C a +50°C
O refrigerador pode ser amplamente utilizado em várias indústrias e laboratórios, e suporta um design personalizado.
Faixa de temperatura | -18°C ~ +30°C | Série +5°C ~ +35°C |
Capacidade de arrefecimento | até 0,9kW | até 50kW |
Equipamentos de refrigeração do tipo arrefecimento direto
Gama de controlo de temperatura: -120°C a -10°C
É adequado para locais com pequena área de troca de calor e grande troca de calor.
Faixa de temperatura | -40°C ~ -10°C | -80°C ~ -35°C | -120°C ~ -90°C |
Potência do compressor | até 8HP | até 8HP*2 | até 45HP*3 |
Chillers de arrefecimento direto de temperatura ultra baixa
Gama de controlo de temperatura: -150°C a -110°C
Soluções personalizadas para a sua empresa.
Faixa de temperatura | -150°C ~ -110°C |
Capacidade de arrefecimento | até 11kW |
Resfriadores de parafuso
Refrigeradores de parafuso a baixa temperatura e refrigeradores de parafuso a temperatura ambiente
Soluções personalizadas para a sua empresa.
Faixa de temperatura | +5°C ~ +30°C | +5°C ~ +30°C | +5°C ~ +30°C | +5°C ~ +30°C | -25°C ~ +5°C | -25°C ~ +5°C |
Capacidade de arrefecimento | até 1027kW (Compressor único) | até 2134kW (Compressor duplo) | até 934kW (compressor único) | até 1940kW (Compressor duplo) | até 467kW (Compressor único) | até 497kW (Compressor único) |