797
Views
26
CrossRef citations to date
0
Altmetric
Article

An investigation on debris bed self-leveling behavior with non-spherical particles

, , , , , , , , , & show all
Pages 1096-1106 | Received 10 Dec 2013, Accepted 24 Mar 2014, Published online: 01 May 2014

References

  • Tentner AM, Parma E, Wei T, Wigeland R. Evaluation of design measures for severe accident prevention and consequence mitigation. Argonne (USA): Argonne National Laboratory; 2010. ( Report no. ANL-GENIV-128).
  • Zhang B, Harada T, Hirahara D, Matsumoto T, Morita K, Fukuda K, Yamano H, Suzuki T, Tobita Y. Experimental investigation on self-leveling behavior in debris beds. Nucl Eng Des. 2011;241:366–377.
  • Zhang B, Harada T, Hirahara D, Matsumoto T, Morita K, Fukuda K, Yamano H, Suzuki T, Tobita Y. Self-leveling onset criteria in debris beds. J Nucl Sci Technol. 2010;47:384–395.
  • Nakai R, Suzuki T, Yamano H, Seino H, Ishikawa H, Kamiyama K, Koyama K, Morita K. In: Development of level 2 PSA methodology for sodium-cooled fast reactors (1 overview of evaluation technology development. In: Proceedings of the 8th International Topical Meeting on Nuclear Thermal-Hydraulics, Operation and Safety (NUTHOS-8); 2010 Oct 10–14; Shanghai, China. [CD-ROM].
  • Hesson JC, Sevy RH, Marciniak TJ. Post-accident heat removal in LMFBRS: in-vessel considerations. Argonne (USA): Argonne National Laboratory; 1971. ( Report no. ANL-7859).
  • Gabor JD. Simulation experiments for internal heat generation. Argonne (USA): Argonne National Laboratory; 1974. ( Report no. ANL-RDP-32).
  • Alvarez D, Amblard M. Fuel leveling. In: Proceedings of 5th Information Exchange Mtg. on Post Accident Debris Cooling; 1982 Jul 28–30; Karlsruhe, Germany.
  • Cheng S, Yamano H, Suzuki T, Tobita Y, Nakamura Y, Zhang B, Matsumoto T, Morita K. Characteristics of self-leveling behavior of debris beds in a series of experiments. Nucl Eng Technol. 2013;45:323–334.
  • Cheng S, Tanaka Y, Gondai Y, Kai T, Zhang B, Matsumo T, Morita K, Fukuda K, Yamano H, Suzuki T, Tobita Y. Experimental studies and empirical models for the transient self-leveling behavior in debris bed. J. Nucl. Sci. Technol. 2011;48:1327–1336.
  • Cheng S, Yamano H, Suzuki T, Tobita Y, Gondai Y, Nakamura Y, Zhang B, Matsumoto T, Morita K. An experimental investigation on self-leveling behavior of debris beds using gas-injection. Exp Therm Fluid Sci. 2013;48:110–121.
  • Cheng S, Hirahara D, Tanaka Y, Gondai Y, Matsumoto T, Morita K, Fukuda K, Yamano H, Suzuki T, Tobita Y. Experimental study of bubble behavior in a two-dimensional particle bed with high solid holdup. In: Proceedings of 18th International Conference on Nuclear Engineering (ICONE-18); 2010 May 17–21; Xi’an, China. [ CD-ROM].
  • Cheng S, Hirahara D, Tanaka Y, Gondai Y, Zhang B, Matsumoto T, Morita K, Fukuda K, Yamano H, Suzuki T, Tobita Y. Experimental investigation of bubbling in particle beds with high solid holdup. Exp Therm Fluid Sci. 2011;35:405–415.
  • Tobita Y, Kondo S, Yamano H, Morita K, Maschek W, Coste P, Cadiou T. The development of SIMMER-III, an advanced computer program for LMFR safety analysis, and its application to sodium experiments. Nucl Technol. 2006;153:243–263.
  • Guo L, Morita K, Tobita Y. Numerical simulation of three-phase flows with rich solid particles by coupling multi-fluid model with discrete element model. In: Proceedings of 20th International Conference on Nuclear Engineering collocated with ASME 2012 Power Conference (ICONE20-POWER2012); 2012 Jul 30–Aug 3; Anaheim, USA. [ CD-ROM].
  • Guo L, Morita K, Tobita Y. Numerical simulation of bubbling fluidized beds by coupling multi-fluid model with discrete element method. In: Proceedings of 8th Japan-Korea Symposium on Nuclear Thermal Hydraulics and Safety (NTHAS8); 2012 Dec 9–12; Beppu, Japan.
  • Guo L, Morita K, Tagami H, Tobita Y. Numerical simulation of self-leveling behavior in debris bed by a hybrid method. In: Proceedings of 21st International Conference on Nuclear Engineering (ICONE-21); 2013 Jul 29–Aug 2; Chengdu, China. [CD-ROM].
  • Zhang B, Matsumoto T, Morita K, Yamano H, Tagami H, Suzuki T, Tobita Y. Numerical simulation of the self-leveling phenomenon by modified SIMMER-III. In: Proceedings of 20th International Conference on Nuclear Engineering collocated with ASME 2012 Power Conference (ICONE20-POWER2012); 2012 Jul 30–Aug 3; Anaheim, USA. [CD-ROM].
  • Cheng S, Tanaka Y, Gondai Y, Kai T, Zhang B, Matsumo T, Morita K, Fukuda K, Yamano H, Suzuki T, Tobita Y. Experimental investigation on self-leveling behavior in debris bed. In: Proceedings of 7th Korea-Japan Symposium on Nuclear Thermal Hydraulics and Safety (NTHAS7); 2010 Nov 14–17; Chuncheon, Korea. [CD-ROM].
  • Cheng S, Tagami H, Yamano H, Suzuki T, Tobita Y, Zhang B, Matsumoto T, Morita K. Evaluation of debris bed self-leveling behavior: a simple empirical approach and its validations. Ann Nucl Energy. 2014;63:188–198.
  • Cheng S, Yamano H, Suzuki T, Tobita Y, Nakamura Y, Zhang B, Matsumoto T, Morita K. Empirical correlations for predicting the self-leveling behavior of debris bed. Nucl Sci Tech. 2013;24:010602_1–010602_10.
  • Cheng S, Kai T, Gondai Y, Nakamura Y, Fuke F, Zhang B, Matsumoto T, Morita K, Yamano H, Tagami H, Suzuki T, Tobita Y. A simple approach to the prediction of transient self-leveling behavior of debris bed. In: Proceedings of 4th International Symposium on Heat Transfer and Energy Conservation; 2012 Jan 6–9; Guangzhou, China. [CD-ROM].
  • Holdich RG. Fundamentals of particle technology. Shepshed: Midland Information Technology & Publishing; 2002. p. 45–54.
  • Matsuba K, Kamiyama K, Konishi K, Toyooka J, Sato I, Zuev VA, Kolodeshnikov AA, Vasilyev YS. Experimental study on material relocation during core disruptive accident in sodium-cooled fast reactors: results of a series of fragmentation tests for molten oxide discharged into a sodium pool. In: Proceedings of 8th Japan-Korea Symposium on Nuclear Thermal Hydraulics and Safety (NTHAS-8); 2012 Dec 9–12; Beppu, Japan.
  • Ergun S. Fluid flow through packed columns. Chem Eng Prog. 1952;48:89–94.
  • Geldart D. Estimation of basic particle properties for use in fluid-particle process calculations. Powder Technol. 1990;60:1–13.
  • Nemec D, Levec J. Flow through packed bed reactors: 1. Single-phase flow. Chem Eng Sci. 2005;60:6947–6957.
  • Koide K, Yasuda T, Iwamoto S, Fukuda E. Critical gas velocity required for complete suspension of solid particles in solid-suspended bubble columns. J Chem Eng Jpn. 1983;16:7–12.
  • Koide K, Horibe K, Kawabata H, Ito S. Critical gas velocity required for complete suspension of solid particles in solid-suspended bubble column with draught tube. J Chem Eng Jpn. 1984;17:368–374.
  • Abraham M, Khare AS, Sawant SB, Joshi JB. Critical gas velocity for suspension of solid particles in three-phase bubble columns. Ind Eng Chem Res. 1992;31:1136–1147.
  • Geldart D. Gas fluidization technology. Chichester: Wiley; 1987.
  • Pettyjohn ES, Christiansen ER. Effect of particle shape on free-settling rates of isometric particles. Chem Eng Prog. 1948;44:157–172.
  • Murugesan T, Sivakumar V. Pressure drop and flow regimes in cocurrent gas-liquid upflow through packed beds. Chem Eng J. 2002;88:233–243.
  • Turpin JL, Huntington RL. Prediction of pressure drop for two-phase, two-component concurrent flow in packed beds. AIChE J. 1967;13:1196–1202.
  • Brouwers HJH. Particle-size distribution and packing fraction of geometric random packings. Phys Rev E. 2006;74:031309_1–031309-14.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.