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Water reactor fuel activities in Russia

Abstract

The presentation reviews the following issues: some specific features of Russian WWER type fuel assemblies and fuel rods; WWER fuel performance; fuel status after irradiation; main directions of programme towards high burnup; development of absorber element. 8 refs, 13 figs, 3 tabs.
Authors:
Sokolov, N [1] 
  1. State Scientific Centre of Russian Federation, A.A Bochvar All-Russian Research Inst. of Inorganic Materials, Moscow (Russian Federation)
Publication Date:
Dec 01, 1997
Product Type:
Conference
Report Number:
IWGFPT-47; CONF-9705210-
Reference Number:
SCA: 210200; 210300; PA: AIX-28:076008; EDB-97:143759; SN: 97001880468
Resource Relation:
Conference: 14. plenary meeting of International Working Group on Water Reactor Fuel Performance and Technology, Vienna (Austria), 21-23 May 1997; Other Information: PBD: 1997; Related Information: Is Part Of International Working Group on Water Reactor Fuel Performance and Technology. Summary report of the 14. plenary meeting. Working material; PB: 520 p.
Subject:
21 NUCLEAR POWER REACTORS AND ASSOCIATED PLANTS; FUEL ASSEMBLIES; PERFORMANCE; LWGR TYPE REACTORS; WWER TYPE REACTORS; BURNUP; FISSION PRODUCT RELEASE; FUEL RODS; IRRADIATION; NEUTRON ABSORBERS; RUSSIAN FEDERATION
OSTI ID:
548245
Research Organizations:
International Atomic Energy Agency, Vienna (Austria). International Working Group on Water Reactor Fuel Performance and Technology
Country of Origin:
IAEA
Language:
English
Other Identifying Numbers:
Other: ON: DE98605756; TRN: XA9744844076008
Availability:
INIS; OSTI as DE98605756
Submitting Site:
INIS
Size:
pp. 277-296
Announcement Date:
Dec 11, 1997

Citation Formats

Sokolov, N. Water reactor fuel activities in Russia. IAEA: N. p., 1997. Web.
Sokolov, N. Water reactor fuel activities in Russia. IAEA.
Sokolov, N. 1997. "Water reactor fuel activities in Russia." IAEA.
@misc{etde_548245,
title = {Water reactor fuel activities in Russia}
author = {Sokolov, N}
abstractNote = {The presentation reviews the following issues: some specific features of Russian WWER type fuel assemblies and fuel rods; WWER fuel performance; fuel status after irradiation; main directions of programme towards high burnup; development of absorber element. 8 refs, 13 figs, 3 tabs.}
place = {IAEA}
year = {1997}
month = {Dec}
}