Framatome and General Atomics Electromagnetic Systems (GA-EMS) immediately introduced plans to collaborate on the event of GA-EMS’ helium-cooled 50-MWe quick modular reactor (FMR). Due to its superior modular design, the reactor may be in-built a manufacturing unit and assembled on-site, which helps to scale back capital prices and allows incremental capability additions. Framatome’s U.S. engineering workforce will likely be chargeable for designing a number of important buildings, programs and elements for the FMR.
“This collaboration builds on our lengthy relationship with General Atomics with a shared curiosity in advancing nuclear power applied sciences to create a cleaner world for generations to return,” mentioned Bernard Fontana, CEO of Framatome. “With our expertise and experience in designing reactor programs and elements for superior and small modular reactors, our workforce helps to make that imaginative and prescient a actuality.”
“Designing and deploying a protected, cost-effective, modular reactor is important in serving to the world transfer nearer in the direction of a clear power future,” acknowledged Scott Forney, president of GA-EMS. “We sit up for leveraging our two firms’ a long time of expertise in advancing nuclear expertise and demonstrating the subsequent era of commercially viable nuclear reactors.”
The FMR is designed for enhanced security and ease of operation with fast-response load following and total excessive effectivity. It provides stability for the electrical energy grid and may reply to fulfill demand based mostly on fluctuations in renewable power sources. The gas-cooled FMR makes use of a helium coolant whereas eliminating the necessity for the graphite frequent in different helium-cooled designs. Its gas is optimized to help reactor operations for as much as 9 years earlier than needing to get replaced. The energy conversion system doesn’t use complicated steam turbines and pressurizers, which helps to drive down prices.
“We are happy to work with GA-EMS to advance this revolutionary and promising reactor,” mentioned Gary Mignogna, president and CEO of Framatome in North America. “The synergies between our groups make this a great challenge for demonstration and subsequent commercialization.”
An illustration of the FMR, which can confirm the design, manufacturing, development and operation of the expertise, is focused for completion within the early 2030s. Commercial deployment is anticipated within the mid-2030s.
(Source and picture: Framatome)

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