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The BWRX-300 is a smaller evolution of an earlier GE Hitachi reactor design, note the Economic Simplified Boiling Water Reactor (ESBWR) design and utilizing components of the operational Advanced boiling water reactor (ABWR) reactor. [1] Boiling water reactors are nuclear technology that use ordinary light water as a nuclear reactor coolant ...
Illustration of a light water small modular nuclear reactor (SMR) The small modular reactor (SMR) is a class of small nuclear fission reactor, designed to be built in a factory, shipped to operational sites for installation and then used to power buildings or other commercial operations.
The NuScale is a light water reactor (LWR), with 235 U fuel enrichment of less than 5%. It has a two-year refueling period. [87] The modules, however, are exceptionally heavy, each weighing approximately 500 tons.
The planned small modular reactors will use the Xe-100 design, a high-temperature gas-cooled reactor developed by X-energy, a global leader in advanced nuclear reactor and fuel technology.
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The technology company's agreement with Kairos Power aims to bring Kairos' first small modular reactor online by 2030, followed by additional deployments through 2035. ... and appropriately review ...
A diagram of a NuScale small modular reactor (SMR) NuScale reactors would take 1% of the space of a conventional reactor and generate 77 MWe. [64] [65] [66] The design uses light water for cooling and power generation as in conventional nuclear plants. Water is heated by the nuclear core at the base of the reactor vessel.
"NuScale is the first small modular reactor design reviewed by the NRC. NuScale is based on a small light water reactor developed at Oregon State University in the early 2000s. It consists of one or more NuScale power modules (hereafter referred to as power module(s))."