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VVER reactor designs have been elaborated to incorporate automatic control, passive safety and containment systems associated with Western generation III reactors. The VVER-1200 is the version currently offered for construction, being an evolution of the VVER-1000 with increased power output to about 1200 MWe (gross) and providing additional ...
The VVER-TOI design is intended to improve the competitiveness of Russian VVER technology in international markets. It would use VVER-1300/510 water pressurized reactors constructed to meet modern nuclear and radiation safety requirements.
This category includes power stations with the VVER-440, VVER-1000, VVER-1200 reactors. Pages in category "Nuclear power stations using VVER reactors" The following 33 pages are in this category, out of 33 total.
The first four units are Russian standard reactors of type VVER-1000, and have capacity approximately 1 GW. Units 5 and 6 are Chinese-designed ACPR-1000 reactors, with a traditional 3-loop system. Units 7 and 8 will use the updated VVER-1200 design capable of approximately 1.2 GW, with twice the expected operational lifetime and a 2/3-slower ...
VVER is the Soviet designation for a pressurized water reactor.The number following VVER, in this case 440, represents the power output of the original design. The VVER-440 Model V213 was a product of the first uniform safety requirements drawn up by the Soviet designers.
The first Generation III reactors were built in Japan, in the form of advanced boiling water reactors. On 5 August 2016, a Generation III+ VVER-1200/392M reactor became operational (first grid connection) at Novovoronezh Nuclear Power Plant II in Russia, [10] which was the first operational Generation III+ reactor. [11]
The nuclear plant has six Soviet-designed VVER-1000 V-320 water-cooled and water-moderated reactors containing Uranium 235, and also has spent nuclear fuel at the facility. ... Reactors 1, 2, 5 ...
The power station will comprise two to four VVER-1200/392M reactors of the AES-2006 type. These reactors are the first of their kind. Unit 1 was planned to be added to the grid in 2012, with the second unit to be added a year later. [6] Cost of the project is between 250 billion Rubles. [8]