DEVELOPMENT AND RESEARCH OF STEAM GENERATOR PGV-1000 MODEL

Authors

  • Д.М. Кравцов Одесский национальный политехнический университет, пр. Шевченко, 1, г. Одесса, 65044, Ukraine
  • О.А. Стопакевич Одесский национальный политехнический университет, пр. Шевченко, 1, г. Одесса, 65044, Ukraine

DOI:

https://doi.org/10.15673/0453-8307.5/2013.32642

Keywords:

Mathematical model – Steam generator – Heat transfer – PGV 1000

Abstract

The article spotlights developing of the steam generator PGV-1000 model. The step responses of the model in the environment MATLAB Simulink were obtained, and the effect of changing the heat transfer surface on the dynamic characteristics of the steam generator was investigated.

References

Pelykh S.N. Kompleksnyi kriteriy effektivnosti algoritma manevrirovania moshnosti RU s VVER-1000 v peremennom rejime / S.N. Pelych, V.E. Baskakov, T.V. Tsyselskaya // Tr. Odes. polytekhn, un-ta. – 2009. – Vyp.2. – S.53-58.

Pelykh S.N. Cladding rupture life control methods for a power-cycling WWER-1000 nuclear unit / S.N. Pelykh, M.V. Maksimov // Nuclear Engineering and Design. – 2011. – Vol. 241, № 8. – P. 2956 2963. doi: 10.1016/j.nucengdes.2011.05.011

Pelykh S.N. A method for VVER-1000 fuel rearrangement optimization taking into account both fuel cladding durability and burnup / S.N. Pelykh, M.V. Maksimov, G.T. Parks // Nuclear Engineering and Design. – 2013. – Vol. 257, № 4. – P. 53 60. doi: 10.1016/j.nucengdes.2012.12.022

Rassohin N.H. Parogeneriruiushie ustanovki. – M.: Energoizdat, 1987 5. Serov E.P., Korolkov B.P. Dynamika parogener-atorov. – M.: Energia, 1972

Published

2014-12-09

Issue

Section

Power engineering and energy saving