Details
The air compression system of a subsidiary of China National Pharmaceutical Group has a total of 5 units of 857m³/min and 1 unit of 805m³/min. Through comprehensive design of heat recovery for the IR centrifugal machine, the recovered waste heat is used for winter heating, summer cooling, and provides year-round boiler makeup water heating, cooling and dehumidifying air reheating, to achieve waste heat reuse, turning harm into benefit, and achieving energy saving and emission reduction.
Project effects:
The temperature of compressed air throughout the year is 30±2℃.
The pressure dew point of compressed air throughout the year is < -40℃.
Achieved heating of boiler makeup water from 20℃ to 50℃ at 83t/h.
Achieved heating of heating water from 50℃ to 75℃ at 226t/h.
Can produce 8-13℃ chilled water at 1600t/h.

Refers to the technical system used to lower indoor temperatures and control humidity. It plays a very important role in modern society, especially during the hot summer months. The design and operating principles of cooling systems can be adjusted and optimized according to different needs and locations. The core of the cooling system is the refrigeration cycle, which includes key components such as the compressor, evaporator, condenser, and expansion valve. First, the compressor draws in low-temperature, low-pressure refrigerant and compresses it, raising its temperature and pressure. Next, the refrigerant enters the condenser, where it releases heat by coming into contact with outside air, turning into high-temperature, high-pressure gas. Then, the refrigerant passes through the expansion valve into the evaporator, where the refrigerant's temperature and pressure drop sharply due to the expansion valve's action, absorbing indoor heat and turning into low-temperature, low-pressure gas. Finally, the refrigerant re-enters the compressor, and the cycle continues. The advantages of cooling systems are not only reflected in lowering indoor temperatures but also in effectively controlling indoor humidity. Through the action of the evaporator, the cooling system can condense and discharge moisture from humid air, thereby reducing indoor humidity while providing a more comfortable environment. However, cooling systems also face some challenges and issues. First is the energy consumption problem; cooling systems require a large amount of electricity to operate, which can lead to high energy costs and environmental burdens. Secondly, the maintenance and upkeep of cooling systems also require certain investments and expertise to ensure the system operates normally and extends its lifespan. In summary, cooling systems are crucial in modern life. Through continuous technological innovation and optimization, we can further improve the energy efficiency and environmental performance of cooling systems, providing people with a more comfortable and healthy indoor environment.
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