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The reactor is designed to operate for 33 years without refueling. [ 1 ] [ 2 ] This naval nuclear reactor is estimated to generate 210 megawatts (MWt) [ 3 ] driving a 30 MW pump-jet propulsion system built by BAE Systems that was designed for the Royal Navy [ 4 ] and entered service on the second Trafalgar -class submarine , also featured on ...
The land-based nuclear reactor was built at the National Reactor Testing Station, later called Idaho National Engineering Laboratory near Arco, Idaho. [1] The plant was the prototype for the power system of USS Nautilus (SSN-571) , the world's first nuclear-powered submarine, which used the improved S2W reactor .
USS Seawolf (SSN-575) was the third ship of the United States Navy to be named for the seawolf, the second nuclear submarine, and the only US submarine built with a liquid metal cooled (), beryllium-moderated [2] [3] nuclear reactor, the S2G. [4]
A nuclear submarine is a submarine powered by a nuclear reactor, but not necessarily nuclear-armed.In the US classification, nuclear-powered submarines are designated as SSxN, where the SS denotes submarine, x=G means that the submarine is equipped with guided missiles (usually cruise missiles), x=B means that the submarine is equipped with ballistic missiles (usually intercontinental) and the ...
A fission fragment reactor is a nuclear reactor that generates electricity by decelerating an ion beam of fission byproducts instead of using nuclear reactions to generate heat. By doing so, it bypasses the Carnot cycle and can achieve efficiencies of up to 90% instead of 40–45% attainable by efficient turbine-driven thermal reactors.
Nuclear reactor designs, operating methods and performance standards are highly classified. [ 2 ] The United Kingdom 's first nuclear-powered submarine HMS Dreadnought , commissioned in 1963, was powered by an American Westinghouse S5W reactor , provided to Britain under the 1958 US-UK Mutual Defence Agreement .
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Fission product yields by mass for thermal neutron fission of U-235 and Pu-239 (the two typical of current nuclear power reactors) and U-233 (used in the thorium cycle). This page discusses each of the main elements in the mixture of fission products produced by nuclear fission of the common nuclear fuels uranium and plutonium.