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Schematic GE BWR inside a Mark I containment. General Electric's BWR product line of boiling water reactors represents the designs of a relatively large (~18%) [1] percentage of the commercial fission reactors around the world. The progenitor of the BWR line was the 5 MW Vallecitos Boiling Water Reactor (VBWR), brought online in October 1957.
Unit 1 is a 1,256 MWe net BWR/4 built by General Electric. Construction started on Unit 1 on September 12, 1966 [2] and first powered up for testing on December 20, 1973. Commercial operation began on August 1, 1974. [14] It was licensed to operate through December 20, 2013. [15] Unit 1 was shut down for a year after a fire in 1975 damaged the ...
Units operational: 1 × 902 MW 1 × 895 MW: Make and model: Unit 1: BWR-1 (Mark 1) Units 2–3: BWR-3 (Mark 1) Units decommissioned: 1 × 197 MW: Nameplate capacity: 1797 MW: Capacity factor: 98.13% (2017) 73.30% (lifetime, excluding Unit 1) Annual net output: 15,447 GWh (2017) External links; Website: Dresden Generating Station: Commons ...
1 Primary business units. 2 Other business units. 3 See also. 4 References. 5 Sources. ... GE Additive; GE Capital. GE Energy Financial Services; GE Digital; GE ...
Final rule was issued on September 16, 2014, after two outstanding problems with GE-Hitachi's modeling of loads on the steam dryer were solved. [8] [9] In January 2014, GE Hitachi paid $2.7 million to resolve a lawsuit alleging it made false claims to the NRC about its analysis of the steam dryer. [10] The NRC granted design approval in ...
A boiling water reactor (BWR) is a type of 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). BWR are thermal neutron reactors, where water is thus used both as a coolant and as a moderator, slowing down
Slightly different versions of the ABWR are offered by GE-Hitachi, Hitachi-GE, and Toshiba. [5]In 1997 the GE-Hitachi U.S. ABWR design was certified as a final design in final form by the U.S. Nuclear Regulatory Commission, meaning that its performance, efficiency, output, and safety have already been verified, making it bureaucratically easier to build it rather than a non-certified design.
In Canada, the organization was known as GE Hitachi Nuclear Energy Canada and its purpose is to provide fuel and service nuclear power plants that operate on heavy water reactors made by Atomic Energy Canada. [3] In 2016, GE and Hitachi sold GE Hitachi Nuclear Energy Canada to BWXT Canada Ltd. and renamed BWXT Nuclear Energy Canada [5] [6] [7] [8]
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