Thermal hydraulic analysis of SMART for heat removal transients by a secondary system

Author:

Chung Young-Jong,Kim Soo Hyoung,Kim Hee-Cheol

Publisher

Elsevier BV

Subject

Mechanical Engineering,Waste Management and Disposal,Safety, Risk, Reliability and Quality,General Materials Science,Nuclear Energy and Engineering,Nuclear and High Energy Physics

Reference20 articles.

1. Carelli, M.D., Miller, K., Lombardi, C.V., Todreas, N.E., Greenspan, E., Ninokata, H., Lopez, J., Cinotti, L., Collado, J., Oriolo, F., Alonso, G., Moraes, M.M., Boroughs, R., Barroso, A., Ingersoll, D., Cavlina, N., 2002. IRIS: Proceedings towards the preliminary design. In: Proceedings of the 10th International Conference on Nuclear Engineering (ICONE-10), Arlington, USA, 14–18 April.

2. Chang, M.H., et al., 1998. Design characteristics of SMART for nuclear desalination. In: Proceedings of the International Conference on Emerging Nuclear Energy Systems, Tel-Aviv, Israel.

3. Chang, M.H., et al., 2002. Basic design report of SMART. KAERI/TR-2142/2002, KAERI, Taejon, Korea.

4. Correlating equations for laminar and turbulent free convection from a horizontal cylinder;Churchill;Int. J. Heat Mass Trans.,1975

5. Dougall, R.S., Rohsenow, W.M., 1963. Film Boiling on the Inside of Vertical Tubes with Upward Flow of the Fluid at Low Qualities. Department of Mechanical Engineering, MIT Press, Cambridge, MA, Report No. 9079-26.

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