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  2. GE BWR - Wikipedia

    en.wikipedia.org/wiki/GE_BWR

    GE had been a major contractor to the Fukushima Daiichi Nuclear Power Plant in Japan, which consisted of six boiling water reactors of GE design. The reactors for Units 1, 2, and 6 were supplied by General Electric, the other three by Toshiba and Hitachi. Unit 1 was a 460 MW boiling water reactor from the BWR-3 design iteration introduced in ...

  3. Advanced boiling water reactor - Wikipedia

    en.wikipedia.org/wiki/Advanced_boiling_water_reactor

    Model of the Toshiba ABWR. The advanced boiling water reactor (ABWR) is a Generation III boiling water reactor. The ABWR is currently offered by GE Hitachi Nuclear Energy (GEH) and Toshiba. The ABWR generates electrical power by using steam to power a turbine connected to a generator; the steam is boiled from water using heat generated by ...

  4. Boiling water reactor safety systems - Wikipedia

    en.wikipedia.org/wiki/Boiling_water_reactor...

    The Reactor Protection System (RPS) is a system, computerized in later BWR models, that is designed to automatically, rapidly, and completely shut down and make safe the Nuclear Steam Supply System (NSSS – the reactor pressure vessel, pumps, and water/steam piping within the containment) if some event occurs that could result in the reactor entering an unsafe operating condition.

  5. Boiling water reactor - Wikipedia

    en.wikipedia.org/wiki/Boiling_water_reactor

    A boiling water reactor (BWR) is a type of light water nuclear reactor used for the generation of electrical power. It is the second most common type of electricity-generating nuclear reactor after the pressurized water reactor (PWR), which is also a type of light water nuclear reactor. The main difference between a BWR and PWR is that in a BWR ...

  6. BWRX-300 - Wikipedia

    en.wikipedia.org/wiki/BWRX-300

    BWRX-300. The BWRX-300 is a design for a small modular nuclear reactor proposed by GE Hitachi Nuclear Energy (GEH). The BWRX-300 would feature passive safety, in that neither external power nor operator action would be required to maintain a safe state, even in extreme circumstances.

  7. Dresden Generating Station - Wikipedia

    en.wikipedia.org/wiki/Dresden_Generating_Station

    Dresden Generating Station (also known as Dresden Nuclear Power Plant or Dresden Nuclear Power Station) is the first privately financed nuclear power plant built in the United States. Dresden 1 was activated in 1960 and retired in 1978. Operating since 1970 are Dresden units 2 and 3, two General Electric BWR-3 boiling water reactors.

  8. Columbia Generating Station - Wikipedia

    en.wikipedia.org/wiki/Columbia_Generating_Station

    Columbia Generating Station is a BWR-5. It features a Mark II containment structure. The reactor core holds up to 764 fuel assemblies, and 185 control rods, more technically known as control blades. The reactor is licensed for a power output of 3486 thermal megawatts (MWt). The gross electrical output of the plant is 1230 megawatts-electric (MWe).

  9. Economic Simplified Boiling Water Reactor - Wikipedia

    en.wikipedia.org/wiki/Economic_Simplified...

    The Economic Simplified Boiling Water Reactor (ESBWR) is a passively safe generation III+ reactor design derived from its predecessor, the Simplified Boiling Water Reactor (SBWR) and from the Advanced Boiling Water Reactor (ABWR). All are designs by GE Hitachi Nuclear Energy (GEH), and are based on previous Boiling Water Reactor designs.