Sunday, 14 June 2015

Spent Nuclear Fuel in Ukraine. Storage Technology

Short description of the technology of spent nuclear fuel storage on Zaporizhska NPP (Ukraine).


Tuesday, 10 February 2015

Equivalent thermal conductivity of the storage basket with spent nuclear fuel of VVER-1000 reactors

Due to limitation of computation resources and/or computation time many thermal problems require to use simplified geometrical models with equivalent thermal properties. A new method for definition of equivalent thermal conductivity of spent nuclear fuel storage casks is proposed. It is based on solving the inverse heat conduction problem. For the proposed method two approaches for equivalent thermal conductivity definition were considered. In the first approach a simplified model in conjugate formulation is used, in the second approach a simplified model of solid body which allows an analytical solution is used. For safety ensuring during all time of spent nuclear fuel storage the equivalent thermal conductivity was calculated for different storage years. The calculated equivalent thermal conductivities can be used in thermal researches for dry spent nuclear fuel storage safety.

Read More: http://www.hanser-elibrary.com/doi/ref/10.3139/124.110443

Friday, 10 January 2014

Book "Spent Nuclear Fuel Dry Storage Safety"



Book "Spent Nuclear Fuel Dry Storage Safety"
Spent Nuclear Fuel Dry Storage Safety / V. G. Rudychev, S. V. Alyokhina, V. N. Goloschapov and other / Edited by acad. NAS of Ukraine Yu. М. Matsevity and corr. member of NAS of Ukraine I. I. Zalubovsky // V. N. Karazin Kharkiv National University. – Kharkiv, 2013 – 200 p. – in rus. – ISBN 978-966-623-945-0

The monograph devoted to problems and technical questions of dry safe storage of spent nuclear fuel of water-water energy reactors. The basic materials in book closely associated with operating experience of Dry Spent Nuclear Fuel Storage Facility on Zaporizhska NPP and enclose of scientific approaches to nuclear and radiation safety and safe thermal conditions calculations. The monograph can be useful for operating personnel of nuclear power stations, for experts of research and development organizations of nuclear energy specialization, for scientific officers, post-graduated students and energy specialty students.