Results 201 to 210 of about 705,564 (243)
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VVER-1000 Regulatory Forum Benchmark
Transactions of the American Nuclear Society - Volume 123, 2020K. Velkov, R. Henry
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2D full-core VVER-1000 calculation in Serpent
2016 17th International Scientific Conference on Electric Power Engineering (EPE), 2016This contribution deals with the topic of 2D full-core calculation of VVER-1000 core on Nuclear Power Plant Temelin. It is the first core with TVEL TVSA-T fuel, thus it offers a unique possibility to conduct a full-core calculation with fresh fuel. This calculation was proposed by SKODA JS as a benchmark for deterministic codes.
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Project Report: Accident Management in VVER-1000
2008Recommended by Antonio Alvim The present paper deals with the investigation study on accident management in VVER-1000 reactor type conducted in the framework of a European Commission funded project. The mentioned study involved both experimental and computational fields.
D’Auria Francesco +4 more
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VVER-1000 fuel cycles analysis with different burnable absorbers
Nuclear Engineering and Design, 2019Abstract The increase of fuel cycle efficiency is crucial for all reactor operators. Burnable absorbers can compensate excess reactivity at the beginning of the cycle. They also stabilize the power distribution. The commonly used burnable absorbers are in form of Gd2O3 and IFBA in LWR. Also interest in Er2O3 has been rising during recent years.
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Scaling of Small Break LOCA in VVER 1000 System
2005This paper deals with the problem of scaling complex scenario measured experimental facilities and replicated by the use of Cathare2 code. ‘Kv-scaled’ calculation an important role in the frame of the “on-transient qualification” of the nodalization owing the procedure envisaged at Pisa University) and to evaluate the importance oe scale-distortions in
CHERUBINI M +3 more
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VVER-1000 SFAT-Specification of an industrial prototype
2000The project to develop a Spent Fuel Attribute Tester (SFAT) for Ukrainian VVER-1000 facilities is going on under the Task FIN A 1073 of the Finnish Support Programme to the IAEA safeguards. In the SFAT method [1] the verification is based on an unambiguous detection of gamma radiation of the fission products.
Tiitta, Antero +4 more
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