Power through intermittency with BESS
Managing the intermittency of renewable energy generation is a major challenge for industries looking to decarbonize. Battery energy storage systems (BESS) offer a forward-thinking solution, and implementing, monitoring and managing these technologies efficiently and safely takes a reliable, knowledgeable partner.
Deploy the best technology for your needs with our expert guidance, from upfront planning to long-term management. Experience cost-efficient, reliable BESS projects that meet your budget, schedule and sustainability goals every time with our vendor agnostic approach, self-performance capabilities and unwavering commitment to safety.
Empower your energy future with solutions designed to deliver lasting impact and resilience.
Renewable Integration
Integrating battery energy storage systems (BESS) with renewable energy sources such as wind and solar is key to overcoming the challenge of intermittence. BESS smooths power fluctuations and shifts energy use, helping to integrate renewable energy sources into the grid while reducing electricity costs. This makes it a critical tool for utilities, manufacturers and industries aiming to decarbonize. Successful front-of-the-meter (FTM) renewable integration demands a partner with deep expertise in overhead and underground lines, GIS, HVDC and seamless construction solutions. Behind-the-meter (BTM) deployments of solar often require energy storage for self-consumption and energy arbitrage to maximize the value of renewable energy production with today’s dynamic time-of-use and net metering rate structures. Drive a more sustainable future with customized, reliable and cost-effective renewable energy projects.
Long-duration energy storage
As clean yet variable renewable energy sources increase, the urgency for reliable grid balancing technology grows. Extreme weather events are proving that yesterday’s grid may not endure tomorrow’s challenges. Long-duration energy storage (LDES) offers the flexibility and resilience needed to stabilize the grid in this shifting landscape. Each LDES project is unique, requiring thorough upfront planning to identify the most effective solution.
Guide your project from initial studies to completion on a scalable, economical path with our integrated teams. Deliver innovative, sustainable solutions that future-proof your grid with a partner that has a more-than-a-century legacy in groundbreaking innovations and first-of-a-kind projects shaping the world.
Thermal
Thermal long-duration energy storage (LDES) technologies offer an innovative way to store and release electricity using heat and cold. It provides a cost-effective, scalable solution for balancing the grid as renewable energy sources fluctuate. For heat-intensive industrial processes, thermal LDES facilitates decarbonization by transitioning to renewable energy sources for generating and storing thermal energy.
Sensible storage heats low-cost materials such as salt to high temperatures, generating steam that powers a turbine to produce electricity. Latent storage uses phase change technology to liquefy air at low temperatures, which then is converted back into gas to drive electricity production. Pumped heat electrical storage (PHES) transfers heat between thermal stores, creating electricity through a reversible heat pump.
Achieve grid stability and decarbonization goals with thermal LDES, a reliable and efficient option for long-term energy storage.
Smart, secure, future-shaping solutions
Maximize the full potential of renewable energy and secure grid stability with our energy storage solutions. Plan with confidence from the start through our comprehensive lifecycle services, guiding your project smoothly from concept to completion. Experience seamless integration and superior performance across battery energy storage systems (BESS), generation and grid systems, leveraging our expertise in complementary technologies. Drive long-term success with a partner who understands how to make every component work in harmony for a stronger, more reliable future.