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3.85MWH-5MWH On-Grid Liquid-a tihlum BESS Container Energy Storage System a ni

3.85MWH-5MWH On-Grid Liquid-a tihlum BESS Container Energy Storage System a ni
Kimchang:
3.85–5 MWh On-Grid Liquid-cooled BESS hi high-capacity, utility-ready energy storage solution a ni a, operating condition harsa tak hnuaia stable grid support, enhanced safety, leh performance rintlak tak pe thei tura duan a ni.

● Grid stability atan LVRT/HVRT a support
● Automated liquid cooling hian thermal performance a ti nghet thei
● Independent AC/DC container hian system himna a tipung
● Multi-level kangmei laka invennaah hian thermal runaway a awm
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Hrilhfiahna
Technical Parameters 1000 a ni.

3.85MWH-5MWH On-Grid Liquid-a tihlum BESS Container Energy Storage System a ni

 

3.85–5 MWh On-Grid Liquid-cooled BESS Container hi grid-connected energy storage application lian tak tak atan engineer a ni. Fully automated liquid cooling hian battery temperature chu active takin a balance a, hei hian efficiency sang tak leh service life rei tak a vawng reng thei a ni. Pre-assembled container design hian phurh chhuah, dah leh enkawl dan a ti awlsam hle. Independent AC/DC container architecture leh multi-level kangmei laka invenna hian system himna a ti sang a, voltage hniam leh sang ride-through support hian hmun sang leh boruak dinhmun hrang hrangah grid stability a ti tha bawk.

3.85MWH-5MWH On-Grid Liquid-cooled BESS Container Energy Storage System

 

 

Core specification awmzia dik tak chu:

 

3.85 MWh a ni:

Safety margin sang zawk leh service life rei zawk atana duan a ni a, rintlak-focused project atan a tha hle.

4.2–4.3 MWh vel a ni:

Mainstream grid-connected configuration, capacity, power leh project senso zawng zawng inthlauhna.

5 MWh a ni:

 Container footprint pakhat chhunga energy density sang leh cost efficiency sang ber atana optimized.

 

I Energy mamawh ang zela Optimized
 

 

Grid Support sang tak-Capacity nei

3.85–5 MWh capacity atana duan niin, he system hian charge leh discharge nghet tak a pe a, peak shaving, load balancing, leh grid flexibility te a thlawp a ni.

System Safety tihchangtlun a ni

Independent AC leh DC container design hian fault propagation a veng a, multi-level fire protection hian thermal events fast response leh effective containment a siam thung.

Grid-Thianghlim taka hnathawh

Voltage hniam leh sang ride-through capabilities a support a, grid stabilize a pui a, voltage inthlak danglamna leh grid tihbuai laiin compliance vawng reng turin a pui bawk.

Environment hrang hranga insiamrem theihna zau tak

Temperature range zau tak, hmun sang tak tak, leh boruak khirh tak takah rintlak taka hnathawh hian grid-scale deployment hrang hrangah performance mumal tak a siam a ni.

Automated Liquid Thermal Control hmanga siam a ni

Fully automated liquid cooling hian cell temperature active takin a balance a, energy efficiency a ti tha a, degradation a ti tlem a, cycle life rei tak cycle 7000 thleng a support bawk.

Deployment awlsam zawk & O&M

Factory-integrated container structure hian on-site hnathawh a ti tlem a, commissioning hun a ti tawi a, hun rei tak-a hnathawh leh enkawl a ti awlsam bawk.

A sawifiahna
Entawn tlak CESS tih a ni
  1900/3858 2100/4244 2500/5015
Battery dahna tur a awm  
Dilna
-grid ah a awm
Cell chi hrang hrang
LFP 3.2V/314Ah a ni
Battery Module a ni
48S1P/48.23kWh a ni
104S1P/104.50kWh a ni
System Configuration chungchang
384S10P
416S12P
Voltage Rated a ni
1228.8V
1331.2V
System Energy hmanga chakna siam a ni
3858.43kWh a ni
4244.27kWh a ni
5015.96kWh a ni
Charge/Discharge Rate a ni
0.5P
Cycle Nunphung
7000
Thermal Management hmanga enkawl dan
Liquid-a lum a ni
Kangmei laka invenna System
Aerosol/Perfluorohexanone hmanga siam a ni
Buk
38T
40T
43.5T
A len zawng(L*W*H) .
6058*2438*2896mm a ni
Inverter Booster Unit hmanga inzawmkhawm a ni
 
Rated Power a ni
1900kW a ni
2100kW a ni
2500kW a ni
MV AC Voltage a ni
10~35kV a ni
LV AC Voltage a ni
690V
Operating Frequency a ni
50Hz/60Hz a ni
Power Factor a ni
1Hruaitu~1Hnuhnung zawk
Transformer chi hrang hrang
Dry/Oil-Immersed Transformer hmanga siam a ni
Transformer Winding chi hrang hrang
Dy11 a ni
Thermal Management hmanga enkawl dan
Air-a lum a
A len zawng(L*W*H) .
6058*2438*2896mm a ni
System Parameter hrang hrangte
 
System Efficiency hmanga tihchak a ni
88%
Operating Temperature a ni
-20~+55℃(>45℃Derating) a ni a, a hlawhtlinna chu a hlawhtlinna a ni.
Operating Humidity a awm
0~95% (Non-condensing) a ni.
Operating Noise tih a ni
75 dB(A) aia tlem emaw, a tlukpui emaw @3 m
Ingress venhimna a ni
IP54 a ni
Max. Operating Altitude a ni
4000m (>2000m Derating) a ni.
Inbiakpawhna hmanrua
Ethernet hmanga siam a ni
Certification pek dan tur ruahmanna siam a ni
A rilru a hah lutuk chuan a rilru a buai em em a. UN38.3,MSDS,IEC 62619,EN 62477,IEC 62933-5-2, 2019.
EN IEC 61000-6-2/4,G99,VDE-AR-N 4110/4120,EN 50549-2,NTS 631 V2.1
 

Liquid Cooling Thermal hmanga enkawl dan tur ruahmanna siam a ni

Engvangin nge liquid cooling hi kan thlan?

20-feet 5MWh liquid-cooled energy storage container hian 314Ah battery cells a hmang a, cell 5000 chuang a mamawh a ni.Energy density sang avanga thermal challenges awm hian liquid cooling hi duhthlanna tul tak a ni:

 
 

Temperature inang tlanga awm: 1.1.

Battery cell chhunga temperature danglamna 40% tihhniam theihna a nei a, PACK chhunga temperature danglamna chu 2℃chhungah a control thei bawk.

 
 
 

System dam rei zawng tihchangtlun:

Average system auxiliary power consumption chu 20% in a tlahniam a, battery degradation rate chu 10%~15% in a tlahniam a, system dam chhung hi kum 15 chuang a tling thei bawk.

 
 
 

Energy hman tlem zawk:

Liquid cooling hmanga temperature uniformity tihchangtlun hian system self-consumption chu 20% in a tihtlem a ni.

 

 

Liquid Cooling System-a thil awmte

 

Liquid cooling unit (cooling main unit) hmanga tihlumna tur a ni.

Liquid cooling pipeline (multi-stage variable diameter design) hmanga siam chhuah a ni.

Leak hmuhchhuah leh chhanna system

Temperature control algorithm fing tak a ni

 

 

Kangmei laka himna System

 

Kangmei venna system hian battery pack tinte chu venhimna unit tenau ber angin a hmang a, gas-liquid two-phase atomized fire extinguishing agent technology hmangin, aspirating smoke detector, combustible gas detector, leh temperature leh smoke detector te nen a inzawm a, hei hian uluk taka enfiah a ni.

Kangmei laka invenna Architecture hierarchical a ni:

1

Cell Level: 1.1.

Thermal tlanbo control a ni

2

Pack Level: 1000 a ni.

Detection dik tak leh spraying

3

Cluster Level ah chuan:

Isolation leh venhimna

4

Compartment Level ah hian a awm a.

Whole-compartment tuiah inhnim pilna kangmei titawp + ventilation leh puak thei relief

 

 

A hman dan tur Scenario hrang hrang

 

Grid-scale/Power siam chhuahna lam atanga chakna dahkhawmna


Power generation facility-te grid stability siamṭhatna tur, power output curve tihchangtlunna tur, thli leh ni chakna tihtlem tihtlem nan a pui bawk.

01

Sumdawnna leh Industrial lama chakna dahkhawmna


Industrial hmangtute chuan transformer capacity chu energy storage system hmangin an thlak thei a, hei hian peak power consumption a tihtlem bakah capacity cost a ti tlem thei a ni.
Factory leh shopping mall-ah te peak shaving leh load shifting te an ti thei a, electric man a tihhniam bakah backup power source angin a thawk thei bawk.

02

Energy Thar leh Energy Storage


Thli leh ni chakna hmanga power siamna hmunte tihpun leh intermittency leh variability chungchanga harsatna awmte chinfel.

03

Microgrid/Off-grid Systems te chu a hnuaia mi ang hian a ni


Mining hnathawhna atan, thliarkar power grid, communication base station, etc.

04

Emergency-a Power Supply pek chhuah a ni


Infrastructure pawimawh tak tak, damdawi in, data center, leh sipai hmunpui te tan.

05

 

 

Engvangin nge min thlan?

Integration sang tak nei:Battery, BMS, PCS, EMS, thermal management, leh kangmei laka invenna te bakah system inzawmkhawmna sang tak a awm.

Standardization hmanga siam: 1.1.Feet 20-a sei standard container-a innghat, phurh chhuah, dah leh tihzauh awlsamna.

Hriselna sang tak:

Multi-level kangmei laka invenna + liquid cooling temperature control + three-layer BMS architecture.

Cost-a hlawk dan:Battery cells -capacity sang tak avang hian kilowatt-hour khata senso a tlahniam.

A inthlak danglam theihna:

Grid-scale, sumdawnna leh industry, leh off-grid application te pawh huamin scenario hrang hrang atan a tha.

 

High-capacity energy storage system-ah chuan operational stability hi mimal performance indicator aiin practically significant zawk a ni fo thin. 3.85 MWh–5 MWh grid-connected liquid-cooled BESS containerized energy storage system hian cell temperature difference control, system-level redundancy design, leh multi-layer safety mechanisms te uluk taka ngaihtuah a, battery performance tihchhiatna leh operational risks te chu controllable limits chhungah a dah a, hei hian energy chu predictable operation atana lungphum a siam a ni a nun chhung zawnga storage system hman a ni.

 

 

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