Fire protection of industrial and commercial energy storage systems is a crucial matter, and with the continuous development and application of energy storage technology, its safety and reliability issues have also attracted increasing attention. C&I energy storage systems typically include battery energy storage systems, supercapacitor energy storage systems, flywheel energy storage systems, and other forms, which play an increasingly important role in areas such as energy conversion and storage, load management, and balancing.
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Why does the industrial and commercial energy storage fire protection system use perfluorohexanone automatic fire extinguishing device?
However, with the wide application of industrial and commercial energy storage systems, their safety and reliability problems have become increasingly prominent. Due to the large amount of combustible substances present inside the energy storage system, the consequences of a fire can be unimaginable. Therefore, the fire protection problem of industrial and commercial energy storage systems has become a problem that must be paid attention to.
I. Introduction
With the transformation of the energy structure and the popularization of clean energy, industrial and commercial energy storage systems have gradually become an important energy solution. However, the safety of energy storage systems is also becoming increasingly prominent, especially the fire protection of liquid-cooled energy storage systems. In order to ensure the safe operation of liquid-cooled industrial and commercial energy storage systems, a complete set of fire protection schemes is proposed in this paper.
2. Overview of liquid-cooled industrial and commercial energy storage systems
A liquid-cooled industrial and commercial energy storage system is an energy storage system that uses a liquid medium for cooling. Its core components include battery packs, cooling systems, control systems, etc. During operation, the battery pack generates heat and needs to be cooled by a liquid medium to keep the battery pack functioning properly.
3. Fire protection scheme design
1.Layout of firefighting facilities.
Set up independent fire passages and fire protection facilities around the liquid-cooled industrial and commercial energy storage system. Fire exits should be kept clear and obstructed by obstacles. Fire protection facilities should include fire extinguishers, fire extinguishing equipment, fire hydrants, etc., and be regularly inspected and maintained.
2.Fire isolation measures.
Set up a fire barrier around the battery pack to prevent the spread of fire. Combustible and flammable materials should be prohibited from entering the isolation zone. At the same time, a fireproof ceiling is set above the battery pack to prevent the impact of sparks and thermal radiation on the battery pack.
3.Automatic alarm system.
Set up an automatic alarm system in the liquid-cooled industrial and commercial energy storage system to monitor the battery pack temperature, smoke and other parameters in real time. When there is an abnormal situation, the automatic alarm system should be started immediately and an alarm should be sent to the personnel on duty so that measures can be taken in time.
4.Perfluorohexanone automatic fire extinguishing system.
Perfluorohexanone automatic fire extinguishing system is an efficient and environmentally friendly fire extinguishing equipment with a wide range of application prospects. The system uses perfluorohexanone as the extinguishing agent, which has excellent fire extinguishing performance and environmental protection characteristics. Through automatic sensing and injection devices, the perfluorohexanone automatic fire extinguishing system can quickly and accurately extinguish fires, protecting life and property.
The extinguishing principle of the perfluorohexanone automatic fire extinguishing system is based on the physicochemical properties of perfluorohexanone. Perfluorohexanone is a colorless, odorless, non-toxic liquid with low surface tension and good permeability. In the event of a fire, perfluorohexanone can quickly penetrate into the fire source, reduce the temperature of the surface of the combustible, and inhibit the spread of the flame. At the same time, perfluorohexanone will produce a chemical reaction at high temperatures, generating a large amount of heat and water vapor, further reducing the temperature of the fire and diluting the oxygen in the air, so as to achieve the purpose of extinguishing the fire.
Perfluorohexanone automatic fire extinguishing systems offer a variety of advantages. First of all, the system uses perfluorohexanone as a fire extinguishing agent, which is harmless to the environment and meets environmental protection requirements. Secondly, perfluorohexanone has a high fire extinguishing efficiency, which can quickly extinguish fires and ensure the safety of life and property. In addition, the perfluorohexanone automatic fire extinguishing system has automatic sensing and injection devices to achieve fast and accurate fire extinguishment. Finally, the system is simple to operate, easy to maintain, and suitable for fire extinguishing protection in various places.
The fire protection scheme of liquid-cooled industrial and commercial energy storage systems is an important guarantee to ensure their safe operation. Through the implementation of reasonable fire-fighting facilities, fire isolation measures, automatic alarm systems and fire extinguishing measures, the probability of fire occurrence and the loss caused by fire can be effectively reduced. At the same time, strengthening regular inspections and maintenance, training and drills, and the formulation and implementation of emergency plans can further improve the safety and reliability of liquid-cooled industrial and commercial energy storage systems.