| Marca | RW Energy |
| Numerus Modeli | 3.44MWh Systema thesauri energiae in aedificiis ad usum publicum_battery |
| Capacitas nominata | 3.44MWh |
| Potentia maximae caricationis | 0.5P |
| Series | BESS |
Est novus generis systematis magnae scalae pro conservatione energiae cum principio designandi praestantiori. Systema hoc habet refrigerationem liquidam efficacem, maiorem efficientiam, maiorem securitatem et intelligentem operationem et manutentionem. Designatio modulorum potest complere plerosque applicationes exigentes et scena emergentes, et maximos servitia et valorem ad clientes et rete offerre.
Characteristica
Designatio non uniformis et elaborata tuborum, ut differentia temperaturarum <2.5C assequatur.
Plures modi controlis refrigerationis liquidae et consumptio potentiae auxiliaris diminuitur per 20%.
Adoptatur technologia administrativa cluster et efficientia systematis augebitur per 1%.
Equilibratio activa cellula ad cellulam certificat consistenciam inter cellulas.
Protectio multiformis ab cellula ad systema ut prohibeat propagationem caloris incontrollatam.
Equipatum est cum deflagratione ventilatoria, protectione ignis gas et suppressione aquae ut certificet ultimam protectionem.
Administratio sapientialis et monitorium in tempore reali certificat commissionem efficientem.
Designatio compacta cum dispositione laterali et designatio containeris standard 20 pedum certificat 6.88MWh/40FT.
Emittit capacitates transmissorias existentes et mitigat onus peak rete.
Supplementum ad supply electricitatis, reducens costum et certificans stabilitatem rete electricitatis.
Parametri

Scenarii applicativi
Regulatio culminis rete et modulationis frequentiae
Advantagia adaptationis: Capacitas 3.44MWh potest satisfacere quotidiano demandae regulationis culminis 15,000 familias; technologia refrigerationis liquidae supportat caricationem et descaricationem continuam 24 horarum, cum tempore responsionis ad instructiones dispatching rete <100ms, adiuvans rete electricitatis ad normas modulationis frequentiae (conformiter GB/T 36547 normis rete); copertura "conservatio 3.44MWh pro regulazione culminis rete" et "magna BESS pro modulatione frequentiae rete".
Absorptionis stationis electricitatis novae
Advantagia adaptationis: Potest associari cum photovoltaicis/ventis 100MW-level ad conservandum electricitatem intermittens et augebundum absorptionem novae electricitatis per 20%; designatio containeris 20 pedum breviat cyclum deploymentis ad 15 dies, adaptans necessitatibus rapidi connectionis rete stationum; copertura "conservatio 3.44MWh supportans stationes photovoltaicas" et "magna systemata conservationis pro ventis".
Supply backup rete regionalis
Advantagia adaptationis: Protectio IP54 et resistencia (-20℃~50℃) temperaturarum, apta pro deploymente substationis exterioris; capacitas 3.44MWh potest supportare supply urgentem pro oneribus clavibus retis regionalis (sicut hospitalia, hub transportationis) per 8-10 horas, evitans outage extensivam causatam defectu rete; copertura "conservatio backup rete regionale" et "magna systemata conservationis urgentis".
The basic principle of air cooling technology is to take away the heat generated by battery cells through flowing air, thus keeping the battery temperature within a reasonable range. As a heat transfer medium, air can achieve heat exchange through natural convection or forced convection.
Natural convection:Natural convection refers to the phenomenon in which air flows by itself due to the difference in air density caused by temperature differences.In some cases, natural convection can be used to achieve simple thermal management, but this is usually not sufficient to meet high-intensity or high-density energy storage requirements.
Forced convection:Forced convection is to accelerate air flow through fans or other mechanical devices, thereby improving heat exchange efficiency.In container energy storage systems, forced convection is usually used to achieve effective thermal management.