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Original Articles

A Thermal Fragmentation Model Induced by Surface Solidification

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Pages 628-636 | Received 04 Jan 2002, Accepted 04 Apr 2002, Published online: 07 Feb 2012

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M. Chandra Kumar, A. Jasmin Sudha, V. Subramanian, S. Athmalingam & B. Venkatraman. (2023) Effect of Internal Decay Power and Surface Cooling on Nuclear Fuel Droplet Solidification During MFCI in a SFR—A Numerical Study. Nuclear Science and Engineering 197:1, pages 132-143.
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Louis Manickam, Guo Qiang, Weimin Ma & Sevostian Bechta. (2019) An experimental study on the intense heat transfer and phase change during melt and water interactions. Experimental Heat Transfer 32:3, pages 251-266.
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R. H. Chen, M. L. Corradini, G. H. Su & S. Z. Qiu. (2013) Development of a Solidification Model for TEXAS-VI Code and Application to FARO L14 Analysis. Nuclear Science and Engineering 173:1, pages 1-14.
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Articles from other publishers (8)

Ruiyu Sun, Liangpeng Wu, Wen Ding, Ronghua Chen, Wenxi Tian, Suizheng Qiu & G.H. Su. (2022) From melt jet break-up to debris bed formation: A review of melt evolution model during fuel-coolant interaction. Annals of Nuclear Energy 165, pages 108642.
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Cheng. Peng. (2021) Influence of coupled factors on premixing and fragmentation of mild thermal interaction. Annals of Nuclear Energy 160, pages 108394.
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Yuzuru Iwasawa & Yutaka Abe. (2018) Melt jet-breakup and fragmentation phenomena in nuclear reactors: A review of experimental works and solidification effects. Progress in Nuclear Energy 108, pages 188-203.
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Cheng Peng, Lili Tong & Xuewu Cao. (2016) Preliminary study on the fuel-coolant interaction triggered by thermal effect. Annals of Nuclear Energy 98, pages 112-119.
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Songbai Cheng, Ken-ichi Matsuba, Mikio Isozaki, Kenji Kamiyama, Tohru Suzuki & Yoshiharu Tobita. (2015) A numerical study on local fuel–coolant interactions in a simulated molten fuel pool using the SIMMER-III code. Annals of Nuclear Energy 85, pages 740-752.
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Cheng Peng, Lili Tong & Xuewu Cao. (2015) A hydrodynamic fragmentation model based on boundary layer stripping. Annals of Nuclear Energy 80, pages 95-100.
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Songbai Cheng, Ken-ichi Matsuba, Mikio Isozaki, Kenji Kamiyama, Tohru Suzuki & Yoshiharu Tobita. (2015) SIMMER-III Analyses of Local Fuel-Coolant Interactions in a Simulated Molten Fuel Pool: Effect of Coolant Quantity. Science and Technology of Nuclear Installations 2015, pages 1-14.
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Mitja Uršič, Matjaž Leskovar & Borut Mavko. (2011) Improved solidification influence modelling for Eulerian fuel–coolant interaction codes. Nuclear Engineering and Design 241:4, pages 1206-1216.
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