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Analysis of pin-by-pin effects for LWR rod ejection accident / prepared by A. Avvakumov, V. Malofeev, V. Sidorov.

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Format:
Book
Government document
Author/Creator:
Avvakumov, A., author.
Malofeev, V., author.
Sidorov, V., author.
Contributor:
U.S. Nuclear Regulatory Commission. Office of Nuclear Regulatory Research, sponsoring body.
Institut problem bezopasnogo ispolʹzovanii︠a︡ i︠a︡dernoĭ ėnergii (Rossiĭskiĭ nauchnyĭ t︠s︡entr "Kurchatovskiĭ institut"), issuing body.
Series:
International agreement report ; NUREG/IA-0175.
International agreement report ; NUREG/IA-0175
Language:
English
Subjects (All):
Light water reactors--Accidents--Computer simulation.
Light water reactors.
Nuclear fuel rods--Accidents--Computer simulation.
Nuclear fuel rods.
Physical Description:
1 online resource (xi, 77 pages) : illustrations.
Place of Publication:
Washington, DC : Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, March 2000.
Summary:
"This study was undertaken to demonstrate capabilities of the pin-by-pin model used by the BARS code and to understand various effects of intra-assembly pin-by-pin representation of fuel power, bumup and temperature in calculational analysis of light water reactor rod ejection accidents (LWR REAs). Effects of pin-by-pin fuel power and bumup representation were investigated on the basis of calculations for the peripheral control rod ejection in VVER-1000 of the South Ukrainian NPP Unit 1. Comparative analysis of the REA in pressurized water reactor (PWR) of Three Mile Island Unit 1 using the BARS code with the diffusion nodal codes PARCS and CRONOS2 was done. The important differences in obtained results and effects of pin-by-pin fuel temperature representation are discussed in the report."--Abstract.
Notes:
Title from title screen (viewed on July 15, 2016).
"NSI RRC KI90-12/1-3-00."
"IPSN/00-13."
"March 2000."
"Prepared for U.S. Nuclear Regulatory Commission, Institute for Protection and Nuclear Safety (France), and Ministry of Science and Technologies of the Russian Federation."
"Performing organization: Nuclear Safety Institute of Russian Research Centre, 'Kurchatov Institute'"--Bibliographic data sheet.
"Date report published: February 2000"--Bibliographic data sheet.
Includes bibliographical references (pages 75-77).
Other Format:
Microfiche version: Avvakumov, A. Analysis of pin-by-pin effects for LWR rod ejection accident
OCLC:
953968885

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