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  2. Boiling water reactor - Wikipedia

    en.wikipedia.org/wiki/Boiling_water_reactor

    This Economic Simplified Boiling Water Reactor (ESBWR) design was submitted to the US Nuclear Regulatory Commission for approval in April 2005, and design certification was granted by the NRC in September 2014. [10] Reportedly, this design has been advertised as having a core damage probability of only 3×10 −8 core damage events per reactor ...

  3. GE BWR - Wikipedia

    en.wikipedia.org/wiki/GE_BWR

    Unit 1 was a 460 MW boiling water reactor from the BWR-3 design iteration introduced in 1965 and constructed in July 1967. After the plant became severely damaged in the Tōhoku earthquake and tsunami, loss of reactor core cooling led to three nuclear meltdowns, three hydrogen explosions, and the release of radioactive contamination in Units 1 ...

  4. Advanced boiling water reactor - Wikipedia

    en.wikipedia.org/wiki/Advanced_boiling_water_reactor

    The ABWR is the present state of the art in boiling water reactors [citation needed], and is the first Generation III reactor design to be fully built [citation needed], with several reactors complete and operating. [citation needed] The first reactors were built on time and under budget in Japan, with others under construction there and in Taiwan.

  5. 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.

  6. BWRX-300 - Wikipedia

    en.wikipedia.org/wiki/BWRX-300

    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 ...

  7. BORAX experiments - Wikipedia

    en.wikipedia.org/wiki/BORAX_experiments

    The tests proved key safety principles of the design of modern nuclear power reactors. Design power of BORAX-I was 1.4 megawatts thermal. The BORAX-I design was a precursor to the SL-1 plant, which began operations nearby in 1958. The principles discovered in the BORAX-I experiments helped scientists understand the fatal meltdown at SL-1 in 1961.

  8. GE Hitachi Nuclear Energy - Wikipedia

    en.wikipedia.org/wiki/GE_Hitachi_Nuclear_Energy

    GE and Hitachi have developed the world’s safest Boiling Water Reactors (BWRs) over 60 years, with 40 reactors operating in 5 countries. BWRs and Pressurized Water Reactors (PWRs) both use light water as coolant and steam source, but BWRs generate steam directly in the reactor core, while PWRs use a secondary loop to produce steam. [24]

  9. Dresden Generating Station - Wikipedia

    en.wikipedia.org/wiki/Dresden_Generating_Station

    Operating since 1970 are Dresden units 2 and 3, two General Electric BWR-3 boiling water reactors. Dresden Station is located on a 953-acre (386 ha) site in Grundy County, Illinois near the city of Morris .