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HZSS HVAC Heat Pump Exchanger Efficient Heat Transfer copper/316L

HZSS HVAC Heat Pump Exchanger Efficient Heat Transfer copper/316L
The main function of coaxial heat exchanger in heat pump system is to transfer heat and realize energy exchange between refrigerant and water or air to achieve the purpose of heating or refrigeration
kategorie | Coaxial heat exchanger |
---|---|
Obchodní značka | SHENSHI Heat Exchanger Manufacturer |
Application | Application of heat pump heater |
Material | copper/316L |
přístav | Shanghai/Ningbo/Guangzhou |
Platební metoda | L/C, T/T |
Čas editace | 2025/6/23 |
Více detailů
Product Introduction
The main function of coaxial heat exchanger in heat pump system is to transfer heat and realize energy exchange between refrigerant and water or air to achieve the purpose of heating or refrigeration

Features
High-efficiency heat exchange: due to its unique design, the annular gap between the inner and outer tubes allows the cold and hot fluid to flow reversely, increasing the heat exchange area and improving the heat exchange efficiency. This structure is especially suitable for heat pump heating machine, because it can make full use of the heat of refrigerant to heat water, so as to achieve the purpose of high efficiency and energy conservation. Compact structure: coaxial design saves space, making the overall heat pump unit more compact and easy to install and maintain. This is particularly important for commercial or residential installation environments with limited space. Strong corrosion resistance and scale resistance: heat exchanger of heat pump heating machine needs to contact water for a long time, so corrosion resistance and scale resistance are the key. Coaxial heat exchangers are usually made of corrosion-resistant materials to reduce scale accumulation and ensure long-term operation stability and efficiency.
Working principle
In the heat pump system, the low-temperature and low-pressure refrigerant absorbs the heat in the environment (such as air and water) in the evaporator (i.e. one side of the heat exchanger) and evaporates, turns into high-temperature and high-pressure gas, enters the compressor for pressurization, and then releases the heat in the condenser to the heating water or air, and then returns to the evaporator through the expansion valve for decompression. The coaxial heat exchanger optimizes this heat transfer process through heat conduction and convection on the inner and outer tube walls.

Poslat dotaz
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