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Data Center Cooling System Types

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Data Center Cooling System Types

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From the perspective of cooling methods, there are two main cooling methods for data center computer rooms: air cooling and liquid cooling. The cooling capacity of liquid cooling is 1,000 to 3,000 times that of air, and liquid cooling has low environmental requirements and strong adaptability. Liquid cooling is mainly divided into immersion liquid cooling and cold plate liquid cooling. In addition, what other cooling methods are used in the data center computer room?

1. The first type is traditional water-cooled or air-cooled chiller refrigeration. Air cooling, water cooling, air-liquid hybrid and cold plate liquid cooling solutions are very mature, and the immersed solution is more efficient, green and energy-saving.

The increase in chip computing power has brought about an increase in the difficulty of heat dissipation for a single chip. As the upper limit of air cooling solution capabilities approaches, it will be difficult to solve the heat dissipation problem with air cooling alone in the future.

The deployment cost of immersed liquid cooling is high, several times that of traditional data center cooling modes. It is currently mainly used in intelligent computing centers or ultra-large data centers of leading customers. In the next two to three years, it is expected to gradually be implemented in the Internet, telecommunications, finance, and manufacturing industries. Large-scale development will also go through a long process.

 

Data Center Cooling System Types

 

2. The second type is natural cooling source combined with traditional refrigeration system. This system is generally suitable for cold areas and has absolute advantages in meeting the temperature environment requirements of data center rooms.

3. The third type is fluorinated liquid immersion refrigeration. Using the 50°C boiling point characteristics of fluorinated liquid, phase change refrigeration is used to cool the CPU, and then condensation, liquefaction and reflux are used. The current test results are good. The advantage of this method is that the unit heat flux density of the phase change of the fluorinated liquid is large, which can satisfy the fan heating of the CPU with high heat flux density. In addition, some units use fluorinated liquid as a cooling system, which circulates and cools the fluorinated liquid on the basis of soaking. The heat exchange is between convection and supercooled boiling, and the heat transfer efficiency is also high. This solution requires a large amount of fluorinated liquid and the initial investment cost is high.

4. The fourth type is evaporative refrigeration. This system mainly absorbs heat and refrigeration through the evaporation of water vapor, without the need for compressor compression. The electricity load of the system is low, and the PUE can reach 1.1. However, this solution is greatly affected by the weather and is more suitable for places with low humidity and temperature, which is affected by geographical location. In addition, the refrigeration equipment is larger and requires higher investment.

5. The fifth type is absorption refrigeration. This method mainly uses waste heat for cooling, but the temperature of the heat source has a great influence on the cooling efficiency. The heat source recovered in the data center is at 50°C, so the efficiency of absorption refrigeration is very low and technically difficult. If there is a waste heat source with a higher temperature of 90℃ or above near the data center, this method is more energy-saving. This type of refrigeration solution is currently rarely used, and most scientific research institutions are still exploring absorbing materials and reducing the temperature of the recovered heat source.

6. The sixth method is to use direct cooling system for refrigeration. Freon is currently subject to restrictions due to its double carbon. The transcritical cycle or supercritical cycle of carbon dioxide can be used, but more scholars need to apply and develop it.

 

モデルZLFQ-15ZLFQ-25ZLFQ-50ZLFQ-75ZLFQ-100ZLFQ-150
温度範囲 +5℃~35℃+5℃~35℃+5℃~35℃+5℃~35℃+5℃~35℃+5℃~35℃
冷却水5℃~30℃は冷却水の流れを制御するためにSiemens/Honeywellの調整弁を採用する
温度制御精度±0.2℃±0.5℃±0.5℃±0.5℃±0.5℃±0.5℃
フロー制御10~25L/分25~50L/分40~110L/min70~150L/分150~250L/min200~400L/分
流量制御は周波数変換器によって調整され、精度は±0.3L/minです。
冷却能力(MAX)15kW25kW50kW75kW100kW150kW
ストレージ・ボリューム15L30L60L100L150L200L
ブライン水、シリコーンオイル、フッ素系液体、エチレングリコール水溶液など
中規模パイプラインSUS304SUS304SUS304SUS304SUS304SUS304
入出力インターフェース・サイズG3/4G1G1DN32DN40DN50
冷却水インターフェースG3/4G1DN40DN50DN50DN65
冷却水流量 7~202.5m³/h4m³/h8m³/h13m³/h17m³/h25m³/h
380V 50HZ 1kW1.5kW3kW4kW5kW6kW
シェル冷間圧延シートスプレー RAL7035

 

モデルZLFQ-200ZLFQ-250ZLFQ-300ZLFQ-400ZLFQ-500
温度範囲 +5℃~35℃
温度精度±0.5℃
フロー制御15~30m³/h20~35m³/h25~40m³/h30~60m³/h40~70m³/h
冷却能力(MAX) 200kW250kW300kW400kW500kW
ストレージ・ボリューム250L300L600L1000L1200L
ミディアム水、シリコーンオイル、フッ素系液体、エチレングリコール水溶液など
中規模パイプラインSUS304
入出力インターフェース・サイズDN65DN65DN65DN80DN80
冷却水インターフェースDN80DN80DN100DN100DN125
冷却水流量 7~2034m³/h43m³/h51m³/h69m³/h86m³/h
電源 380V 50HZ7kW7kW8kW9kW13kW
シェル冷間圧延シートスプレー RAL7035

 

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