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Liquid cooling Lithium Ion Baterias Container ESS Solar Energy Storage System

Liquid cooling Lithium Ion Baterias Container ESS Solar Energy Storage System

Models
SWESS556KWH
SWESS2782KWH
Max PV input voltage
1500V
MPPT voltage range at nominal power
860~1250V
860~1300V
Number of DC inputs
5
24
Max PV input current
1250A
5228A

 Liquid-cooled containerized energy storage is a type of energy storage system typically used to store electrical energy or other forms of energy for backup power or grid management needs. The distinctive feature of this system is the utilization of liquid cooling technology to maintain the temperature of energy storage equipment, thereby enhancing efficiency and performance. This technology combines energy storage capabilities with liquid cooling solutions to ensure the efficient operation of the storage equipment. It finds wide-ranging applications in the electricity industry and the integration of renewable energy sources,
contributing to improved reliability and sustainability of power systems.

Models
SWESS556KWH
SWESS2782KWH
PV DATA
Max PV input voltage
1500V
MPPT voltage range at nominal power
860~1250V
860~1300V
Number of DC inputs
5
24
Max PV input current
1250A
5228A
DCDC DATA
Working voltage range
500~1500V
500~1500V
Nominal power
250kw
250kw*5
Max current
344A
344A*5
BATTERY DATA
Cell type
38.4V/100Ah
38.4V/100Ah
Configuration of system
2P252S*3
252S30P
Battery capacity(BOL)
556kWh
2782kWh
Battery voltage range
806.4~1045.8V
 
AC DATA
AC output power
500kVA@50℃
2750kVA@45℃(113℉)/2500kVA@50℃(122℉)
Max AC output current
480A
2886A
Nominal AC voltage
3/PE,600V
550V
AC voltage range
480~690V
484~605V
Nominal grid frequence/Grid frequence range
60Hz/55~65Hz
Power factor at nominal power/Adjustable power factor
>0.99/0.8leading~0.8lagging
Feed-in phases/connection phases
3/3
GENERAL DATA
Dimension(W*H*D)
6058*2896*2438mm/238.5"*114.0"*96.0"
12192*2896*2438mm/480.0"*114.0"*96.0"
Weight(with/without battery)
11.0T/7.0T 24250lbs/15432lbs
37T/16.5T 81571lbs/36376lbs
Degree of protection
IP54/NEMA 3R
Operating temperature range
-30℃~50℃/-22℉~122℉
Relative humidity
0~95%(non-condensing)
Max working altitude
2000m/6562ft
Cooling concept of battery chamber
Heating,Ventilation and air conditioning
Fire suppression system of battery unit
FM-200 extinguishment system
Communication interfaces
RS485,Ethernet
Communication protocols
Modbus RTU,Modus TCP
Compliance
CE
Dimension(W*H*D)of PV inverter
/
2991*2896*2438mm/117.8"*114.0"*96.0"
Weight of PV inverter
/
6.9T/15211.9lbs

CONTAINER ENERGY STORAGE SYSTEM

The container energy storage system includes: an energy storage battery system, PCSbooster system, fire fighting system, monitoring system, etc. lt is widely used in seen such as power security, backup power, peak shaving, and valley filling.

LOW COSTS
* Highly integrated ESS for easy transportation and O&M
* Al pre-assembled, no battery module handling on site
* 8-hour installation to the commission, drop on a pad, and make electrical connections
SAFE AND RELIABLE
* DC electric circuit safety management includes fast-breaking and anti-arc protection
* Multi-level battery protection layers formed by discreet standalone systems offer impeccable safety
 
EFFICIENT AND FLEXIBLE
* Intelligent liquid cooling ensures higher efficiency and longer battery cycle life * Modular design supports parallel connection and easy system expansion *IP55 outdoor cabinet and optional C5 anti-corrosion
 
SMART AND ROBUST
* Fast state monitoring and faults record enables alarm and faults location * Integrated battery performance monitoring and log
Grid Management and Peak Shaving: This type of energy storage system can store electricity and release it when needed to meet peak demand or for grid management purposes. This helps ensure a stable power supply, reduces electricity costs during peak periods, and improves grid stability.
 
Emergency Backup Power: Liquid-cooled containerized energy storage systems can serve as emergency backup power sources, providing electricity during power outages or emergency situations to ensure the continuous operation of critical facilities and services such as hospitals, communication stations, and emergency lighting.
 
Industrial Applications: They can be used in industrial settings for peak shaving, improving power quality, and stabilizing power supply. Some industrial processes may have high electricity demands, and energy storage systems can help balance power requirements and reduce peak demand charges.
 
Participation in Electricity Markets: In some regions, liquid-cooled containerized energy storage systems can participate in
electricity markets. They can be operated in electricity markets and used for energy trading and market operations to generate economic returns.
 
Electric Transportation: Liquid-cooled containerized energy storage systems can also be used in electric transportation, such as electric bus charging stations or electric vehicle charging stations. They help manage electricity demand and ensure the efficient operation of charging stations.
 
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