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High-security 5MWh Liquid-cooled Energy Storage System for maintain power balance

As a premier manufacturer and direct supplier of advanced power management solutions, we engineer utility-scale infrastructure designed to anchor grid stability. This heavy-duty energy container is meticulously crafted for large-scale procurement and industrial deployment.
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Product Overview

As a premier manufacturer and direct supplier of advanced power management solutions, we engineer utility-scale infrastructure designed to anchor grid stability. This heavy-duty energy container is meticulously crafted for large-scale procurement and industrial deployment.

  • Massive 5MWh capacity engineered for rigorous grid-side demands.

  • Advanced liquid thermal management ensuring optimal internal climates.

  • Direct from the manufacturer, guaranteeing premium craftsmanship and rapid fulfillment.

  • Standardized 20-foot containerized footprint for seamless site integration.

  • Fully certified for global utility and commercial enterprise projects.

Product Description

Step into the future of grid management with a heavy-duty energy storage container engineered to anchor power stability in the most demanding environments. The exterior features a rugged, C4 anti-corrosion coated steel shell, offering a sleek, industrial-grade tactile finish that repels harsh weather elements. The heavy-duty steel access doors close with a reassuring, vault-like thud, instantly isolating the internal components from external harshness. Inside, the meticulously arranged liquid-cooled pipelines run silently, entirely eliminating the deafening roar and turbulent airflows typical of traditional air-cooled fans. This structural masterpiece is not merely a battery enclosure; it is a comprehensive power sanctuary. By integrating advanced lithium iron phosphate cells with an intelligent thermal network, it actively resolves the critical challenge of power fluctuation and renewable energy curtailment. Facility operators will immediately notice the precise engineering—every weld, seal, and cable route is executed with flawless precision to ensure absolute structural integrity. The system hums with a quiet, vibration-free efficiency, transforming volatile energy generation into a steady, predictable, and highly lucrative asset for large-scale infrastructure projects.

Product Specifications

Parameter

Specification Details

Product Name

High-security 5MWh Liquid-cooled Energy Storage System (Liquid cooling storage battery container)

Product Model

COREY-L5-1500

Battery Cell

LFP (LiFePO4) 3.2V 314Ah

System Capacity

5015.96 kWh

Voltage Range

1331.2V (1164.8 ~ 1497.6V)

Communication

CAN / RS485 / Ethernet

Cooling Method

Intelligent liquid cooling

Fire Fighting

Perfluorohexanone/heptafluoropropane + water spray

Operating Altitude

4000m (>2000m derate)

Operating Temperature

-20℃ ~ 50℃

Protection Level

IP54 / IP55 (Cabinet)

Weight

43t

Size (L*W*H)

6058 * 2438 * 2896 mm

Certifications

CQC, IEC/EN62619, IEC/EN63056, IEC/EN61000, FCC, IEC/UL60730, UL1973, UL9540A, UN38.3, IEC/EN62477, UL9540, UN3536, GB36276, GB/T34131

Application

Power grid side, power supply side and remote areas

Key Features & Highlights

Our engineering team has meticulously designed this unit to transcend standard energy storage limitations, focusing entirely on operational resilience and long-term asset profitability.

  • Uncompromising Structural Integrity: The robust IP54/IP55 rated enclosure acts as an impenetrable fortress against dust, moisture, and extreme environmental degradation, ensuring internal components remain pristine.

  • Exceptional Energy Density: By packing over 5015 kWh into a standard 20-foot footprint, project developers can maximize land utilization, significantly reducing site preparation and real estate acquisition costs.

  • Acoustic and Thermal Excellence: The transition to advanced fluid dynamics means the system operates with a quiet hum, making it highly suitable for deployment near noise-sensitive commercial zones.

  • Seamless Interoperability: Designed with an open-architecture communication framework, it integrates effortlessly with existing grid management software, eliminating costly infrastructure overhauls.

Core Cell & System Efficiency

  • Next-Generation LFP Technology

    At the heart of this powerhouse lies the new generation of 314Ah Lithium Iron Phosphate (LFP) dedicated energy storage cells. This specific chemistry was selected for its unparalleled thermal stability and degradation resistance. By achieving a massive 5MWh capacity within a single cabin, the system strikes the perfect balance between ultra-high energy density and spatial economy.

  • Maximizing Financial Returns

    Coupled with a sophisticated Three-level Battery Management System (BMS), the architecture ensures a comprehensive system conversion efficiency exceeding 94%. With an operational lifespan engineered to surpass 8,000 cycles, this unit drastically lowers the Levelized Cost of Storage (LCOS). For enterprise operators, this translates directly to a maximized Return on Investment, ensuring that every stored megawatt is preserved and dispatched with minimal loss.

Intelligent Liquid Cooling & Thermal Management

  • Precision Temperature Control

    Moving beyond the limitations of traditional air-cooled methods, this system utilizes an advanced, intelligently routed liquid cooling pipeline network. When you inspect the internal layout, the cool-to-the-touch fluid conduits represent a masterclass in thermal dynamics. This design significantly reduces system flow resistance, locking the temperature difference between individual cells to a strict margin of less than 3℃.

  • Climate-Defying Performance

    By drastically cutting the auxiliary power consumption required by the thermal management system itself, more energy is reserved for actual grid dispatch. Furthermore, this fluid-based architecture ensures that whether the unit is deployed in freezing -20℃ tundras or sweltering 50℃ deserts, the battery performance remains absolutely stable. This eradicates the risk of localized hotspots, thereby safeguarding the system's longevity and structural integrity.

Ultimate Safety & Multi-level Fire Protection

  • Proactive Hazard Mitigation

    In utility-scale energy projects, safety is the uncompromising baseline. We have engineered a multi-dimensional defense mechanism that anticipates and neutralizes threats before they escalate. The primary suppression utilizes clean agents—Perfluorohexanone and heptafluoropropane—which extinguish anomalies without leaving damaging residue on delicate electronics. This is backed by a secondary, heavy-duty water spray system for absolute containment.

  • Certified Global Compliance

    The physical enclosure is fortified with a C4 anti-corrosion rating and IP54/IP55 protection, shielding the core from aggressive environmental corrosion. Supporting Pack-level precise protection and early AI-driven warnings, the system is designed to completely eliminate the risk of thermal runaway propagation. Having passed the most grueling international safety protocols, including UL9540A and UN38.3, it provides enterprise stakeholders with absolute peace of mind.

High Integration & Modular Deployment

  • Pre-assembled for Immediate Action

    Time is a critical asset in large-scale infrastructure rollouts. This system is housed within a standardized 20-foot shipping container, where the battery clusters, BMS, thermal management, fire protection, and power distribution systems are highly integrated into a single outdoor cabinet. Every unit undergoes rigorous pre-assembly and stress testing at our manufacturing facility before dispatch.

  • Scalable Infrastructure

    Upon arrival at the project site, the true value of this design becomes apparent: it is virtually plug-and-play. This drastically slashes on-site construction timelines, labor expenses, and complex debugging phases. Furthermore, the standardized modular architecture allows for effortless parallel expansion. As your enterprise's energy demands grow, adding subsequent units is a seamless, mathematically predictable process.

Smart O&M & Grid Support

  • Intelligent Energy Dispatch

    Equipped with a state-of-the-art Energy Management System (EMS), this unit acts as the central nervous system for your power infrastructure. It supports a wide array of industrial communication protocols, including CAN, RS485, and Ethernet. This enables 24/7 real-time cloud monitoring and AI-driven predictive maintenance, alerting operators to potential inefficiencies long before they manifest as physical faults.

  • Dynamic Grid Stabilization

    Beyond mere storage, this system is a highly active grid participant. It boasts seamless on-grid to off-grid switching capabilities with millisecond-level rapid response times. Whether it is executing frequency regulation, providing crucial voltage support, or initiating a microgrid black start during a total blackout, the system demonstrates exceptional grid-friendliness, stabilizing volatile power networks instantly.

Versatile Applications & Commercial Value

  • Solving Complex Energy Challenges

    This 5MWh container is purpose-built to serve the most demanding sectors: high-energy-consuming industrial parks, massive wind and solar generation plants, remote off-grid communities, and critical data centers. It directly addresses the core pain points of modern energy management, specifically the curtailment of renewable energy by capturing excess wind and solar power for later use.

  • Driving Enterprise Profitability

    By leveraging peak-valley price arbitrage, operators can store energy when rates are low and discharge during expensive peak hours, generating substantial and predictable revenue streams. Additionally, it serves as an impeccable demand charge management tool and a flawless backup power supply for mission-critical equipment, actively empowering enterprises to achieve zero-carbon transitions while securing robust economic gains.

Why Choose Us

Partnering with a dedicated manufacturer fundamentally changes the economics and reliability of your energy infrastructure projects. We bypass intermediaries to deliver pure, unadulterated engineering excellence directly to your site.

  • Direct Manufacturer Pricing: By eliminating third-party markups, we optimize your capital expenditure, delivering top-tier technology at a highly competitive acquisition cost.

  • Stringent Quality Assurance: Every single container undergoes hundreds of hours of thermal, electrical, and structural stress testing in our state-of-the-art facility before it is cleared for shipping.

  • Robust Supply Chain: We maintain deep, strategic control over our raw material sourcing, ensuring that your delivery timelines are met with absolute precision, immune to market fluctuations.

  • Dedicated Engineering Support: Our relationship does not end at delivery. We provide comprehensive, direct-from-factory technical guidance for site integration, commissioning, and lifecycle maintenance.

FAQ

  • 1. How does the intelligent liquid cooling system improve the overall lifespan of the LFP cells compared to air cooling?

    Liquid cooling possesses a significantly higher specific heat capacity than air. By circulating a specialized coolant through precision-welded micro-channels directly adjacent to the battery cells, our system rapidly absorbs and dissipates heat. This keeps the internal temperature variance strictly under 3℃, preventing localized thermal stress and micro-degradation of the cell chemistry, thereby extending the cycle life well beyond 8,000 cycles.

  • 2. Can this 5MWh system be deployed in extreme high-altitude environments without catastrophic failure?

    Yes, the system is structurally and electrically engineered to operate at altitudes up to 4,000 meters. However, due to the thinner air affecting external heat dissipation and dielectric strength, operations above 2,000 meters require a calculated derating protocol. Our EMS automatically adjusts power output parameters to ensure the system remains within safe thermal and electrical margins in high-altitude deployments.

  • 3. What specific mechanisms prevent a single cell failure from triggering a full-container thermal runaway?

    We employ a multi-layered containment strategy. First, the 314Ah LFP chemistry is inherently stable. Second, the liquid cooling system acts as an immediate thermal sink for any overheating cell. If a critical threshold is breached, the Pack-level early warning system triggers the localized release of Perfluorohexanone/heptafluoropropane gas, suffocating the anomaly instantly. As a final fail-safe, the integrated water spray system activates to cool the surrounding infrastructure, completely halting propagation.

  • 4. How does the pre-assembled containerized design reduce our site integration costs?

    Traditional energy storage requires extensive on-site assembly of racks, cabling, HVAC, and fire suppression systems, demanding specialized labor and weeks of time. Our 20-foot container arrives with the battery clusters, Three-level BMS, liquid cooling loops, and switchgear fully integrated and factory-tested. Site preparation is reduced to simply pouring a concrete pad and connecting the main AC/DC terminals and communication cables, slashing deployment costs by up to 40%.

  • 5. Is the communication architecture compatible with legacy SCADA systems used in older utility plants?

    Absolutely. The integrated Energy Management System is built with a highly flexible, open-architecture communication gateway. It natively supports industry-standard protocols including CAN, RS485, and Ethernet (Modbus TCP/IP). This ensures that the 5MWh container can seamlessly handshake with both modern cloud-based AI monitoring platforms and legacy SCADA systems, allowing for unified dispatch and monitoring without requiring you to replace your existing control room infrastructure.

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Phone:+86-178-0221-0017
Email:sales@szcorey.com
WhatsApp:+86-192-7220-7390
Add:Building 28, Hefeng Industrial Park, No.2 Taishan Road,Huqiu District,Suzhou City, Jiangsu Province, China

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