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Battery Energy Storage System Cooling Solutions: Liquid Cooling VS Air Cooling

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Battery Energy Storage System Cooling Solutions: Liquid Cooling VS Air Cooling

 

Battery Energy Storage System Cooling Chiller is a device used in battery thermal management. Common cooling methods in battery thermal management include air cooling and liquid cooling. So, do you know the difference between these two cooling methods?

There are two thermal management methods for lithium battery units, air cooling and liquid cooling have their own characteristics. Battery Energy Storage System Cooling Chiller can be highly integrated with the battery pack, easy to install on site, occupies a small area, and there is no need to worry about dust, water vapor condensation and other issues. In the case of thermal runaway precursors, the liquid cooling solution can rely on a large flow of cooling medium to force the battery pack to dissipate heat and realize heat redistribution between battery modules, which can quickly avoid the continuous deterioration of thermal runaway and reduce the risk of runaway. The air cooling system has the characteristics of simple system, low manufacturing cost, and easy installation. It is widely used in scenarios where the battery energy density is low and the charging and discharging speed is slow.

1. Under the same inlet temperature and harsh wind speed and flow rate, the temperature of the liquid-cooled battery pack should be 30-40°C, while the temperature of the air-cooled battery pack should be 37-45°C. Liquid-cooled Battery Energy Storage System has better temperature uniformity.

2. In order to achieve the same average battery temperature, air cooling requires several times higher energy consumption than liquid cooling. Under the same power consumption, the temperature of the battery pack is higher for air cooling than for liquid cooling. Liquid cooling consumes less power.

3. Due to factors such as air specific heat capacity and small convective heat transfer coefficient, the heat transfer efficiency of battery air cooling technology is low, and the heat generated by the battery increases, which will lead to excessively high battery temperature and the risk of thermal runaway; the liquid cooling system can greatly reduce the thermal runaway of the battery risk.

4. The liquid cooling system is easier to ensure that the battery works at a comfortable temperature. Compared with the air cooling system, the battery life will be extended, and the investment in liquid cooling is less in terms of the overall life cycle.

The air cooling system has the advantages of small initial investment, low maintenance cost, and easy maintenance. It is more suitable for small civilian or commercial battery thermal management. However, Battery Energy Storage System Cooling Chiller has gradually become a suitable battery cooling method in large-capacity and high-energy-ratio fields such as large ground power stations.

 

Air Cooling VS. Liquid Cooling
Air CoolingRefrigeración líquida
heat exchange mediumAirLiquid
drive partsfanno fan required
heat dissipationGeneralThe specific heat capacity of the coolant is 1000 times that of air, and the heat dissipation capacity is much higher than that of air cooling
energy savingPUE is within 2.2PUE is within 1.2
noisehigh noiselow noise due to no fan
construction costThe low-density layout of the cabinets takes up a large area of the equipment room, requiring the use of traditional precision air conditioners and cold and hot pipeline designs.The high-density layout of the cabinet reduces the occupied area, and the low PUE means that the power supply, power distribution and infrastructure scale facilities are reduced.
site selectionIt has high requirements on environmental climate and power factors.It is not affected by the environment and climate, and is not restricted by energy policies, so it can be deployed anywhere.

 

 

Productos y soluciones

 

ModeloCNYL -45
Capacidad de refrigeración45KW
Precisión del control de temperatura±0,5℃ Registro de temperatura en tiempo real
Refrigerante secundarioAnticongelante de etilenglicol, diseño totalmente cerrado del sistema de circulación del refrigerante
RefrigeranteR410A
Flujo300L/min~400L/min Establecer historial de visualización
Baja presión eléctricaSchneider/Siemens
Pantalla de visualizaciónPantalla táctil en color de 7 pulgadas
Potencia380V 50HZ Elija 220V60HZ 460V 60HZ
Material de la carcasaSpray de chapa laminada en frío REL7035
Tuberías internasSUS304

 

ModeloCNYL-5CNYL-8,5
Capacidad de refrigeración5KW8,5 KW
Precisión±0,5℃ Registro de temperatura en tiempo real±0,5℃ Registro de temperatura en tiempo real
Temperatura mínima de entrada del agua15℃(Se puede personalizar según el sistema de batería)13℃(Se puede personalizar según el sistema de batería)
Detección del sensor de presión del sistemaPresión de salida de líquido, presión de entrada de líquido, presión alta y baja del sistema de refrigeración
COP*2.0*2.2
CompresorCompresor hermético (1 juego)34cm3 /revCompresor scroll totalmente cerrado (1 juego)
RefrigeranteR410AR410A
MostrarPantalla táctil en color de 7 pulgadasPantalla táctil en color de 7 pulgadas
Temperatura ambiente de funcionamiento-45℃~55℃
Rango de tensión de control18-32V18-32V
Refrigeración alta presión potencia máxima2,2 KW3,5 KW
Potencia eléctrica de entrada media de refrigeración (kW) +1,5kwfrecuencia ajustable +2kwfrecuencia ajustable
COP*2.0*2.2

 

ModeloCHDYL-4
Capacidad de refrigeración4KW
Precisión±1℃ Registro de temperatura en tiempo real
CompresorCompresor hermético (1 juego)
RefrigeranteR134A
MostrarPantalla táctil en color de 7 pulgadas
Sistema de controlPLC
ComunicaciónCAN
Temperatura ambiente de funcionamiento-45℃~55℃

 

refrigeración de acumuladores de energía

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