Quick Takeaways
  • BYD secures 2.6 GWh energy storage deal with Grenergy in Chile
  • Central Oasis project strengthens solar-plus-storage infrastructure in Latin America

Momentum in large-scale clean energy deployments continues as BYD strengthens its global footprint through a significant energy storage agreement in Chile. The company has secured a 2.6 GWh order in collaboration with Grenergy, reinforcing its growing role in utility-scale battery storage solutions. This development reflects increasing demand for integrated solar-plus-storage systems that enhance grid stability and renewable energy utilization across emerging energy markets.

Central Oasis Project Expands Solar-Plus-Storage Capacity

The newly secured order supports the Central Oasis project located in central Chile, where BYD will supply 468 MC Cube-T energy storage systems. The project includes four key stations—Gran Teno, Tamango, Planchón, and Monte Águila—forming a critical part of the region’s power infrastructure. Designed as a solar-plus-storage network, the project integrates photovoltaic generation with advanced battery systems to ensure reliable energy delivery, even during fluctuations in solar output.

Project Scale and Investment Overview

The Central Oasis initiative combines a total energy storage capacity of 4 GWh with an installed photovoltaic capacity of 1.1 GW. With an estimated investment of approximately $900 million, the project is positioned as one of the region’s major renewable energy developments. Its phased commissioning between 2026 and 2027 is expected to replicate the operational success of the Oasis Atacama model, delivering stable and clean electricity to local grids while reducing dependence on conventional energy sources.

Ongoing Collaboration Between BYD and Grenergy

This latest agreement builds on an established partnership between BYD and Grenergy, which has already delivered multiple large-scale storage projects across Latin America. A previous deal signed in May 2025 involved supplying 3.5 GWh of storage systems for the sixth phase of the Oasis Atacama project in northern Chile. These collaborations highlight a long-term strategic alignment focused on expanding renewable infrastructure and accelerating the adoption of energy storage technologies in the region.

Deployment Progress and Timeline

Initial deployment activities for the Central Oasis project are already underway, with 168 energy storage units shipped for the Gran Teno station. The shipment is expected to arrive by mid-April, with grid connection targeted in the second quarter. The remaining systems are being dispatched in a structured sequence, ensuring steady progress toward project completion. This phased rollout demonstrates efficient execution and strong coordination between project stakeholders.

BYD’s Expanding Global Energy Storage Footprint

BYD’s energy storage business has witnessed rapid growth, with cumulative shipments exceeding 135 GWh as of 2025. The company’s solutions are now deployed across more than 110 countries, supporting over 650 projects worldwide. Through continuous expansion and partnerships, Latin America has emerged as a key region for growth, driven by rising renewable energy investments and favorable policy environments supporting clean energy transitions.

Frequently Asked Questions

What is the BYD energy storage order in Chile about?
The BYD energy storage order in Chile involves supplying 2.6 GWh of battery systems for the Central Oasis solar-plus-storage project developed with Grenergy. The project integrates photovoltaic power generation with large-scale battery storage to enhance grid reliability and ensure consistent renewable energy supply. It includes four major stations and supports Chile’s transition toward cleaner energy infrastructure while reducing reliance on fossil fuels.

Why is the Central Oasis project important for renewable energy?
The Central Oasis project is significant because it combines 1.1 GW of solar capacity with 4 GWh of energy storage, enabling stable and continuous power delivery. By integrating storage with solar generation, it mitigates intermittency issues and supports grid resilience. This model strengthens renewable adoption in Chile and serves as a scalable framework for other regions aiming to build reliable clean energy systems.

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