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Original Paper

Effects of Soluble Fission Products on Thermal Conductivities of Nuclear Fuel Pellets

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Pages 796-802 | Received 05 Nov 1993, Published online: 15 Mar 2012

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Kouta IWASAKI, Tsuneo MATSUI, Koichi YANAI, Ryouichi YUDA, Yuji ARITA, Takanori NAGASAKI, Noboru YOKOYAMA, Ichiro TOKURA, Katsumi UNE & Kenichi HARADA. (2009) Effect of Gd2 O3 Dispersion on the Thermal Conductivity of UO2 . Journal of Nuclear Science and Technology 46:7, pages 673-676.
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Masaki AMAYA, Tomoyuki SUGIYAMA, Fumihisa NAGASE & Toyoshi FUKETA. (2008) Fission Gas Release in BWR Fuel with a Burnup of 56 GWd/t during Simulated Reactivity Initiated Accident (RIA) Condition. Journal of Nuclear Science and Technology 45:5, pages 423-431.
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Masaki AMAYA, Tomoyuki SUGIYAMA & Toyoshi FUKETA. (2004) Fission Gas Release in Irradiated UO2 Fuel at Burnup of 45 GWd/t during Simulated Reactivity Initiated Accident (RIA) Condition. Journal of Nuclear Science and Technology 41:10, pages 966-972.
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Masaki AMAYA, Toshio KUBO & Yoshiaki KOREI. (1996) Thermal Conductivity Measurements on UO2+x from 300 to 1,400 K. Journal of Nuclear Science and Technology 33:8, pages 636-640.
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Yuta Horii, Shun Hirooka, Hiroki Uno, Masahiro Ogasawara, Tetsuya Tamura, Tadahisa Yamada, Naoya Furusawa, Tatsutoshi Murakami & Masato Kato. (2024) Thermal conductivity measurement of uranium–plutonium mixed oxide doped with Nd/Sm as simulated fission products. Journal of Nuclear Materials 588, pages 154799.
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Shan Feng, Yuhui Deng, Siqin Zhao, Buda Li, Hangbo Qi, Hengfeng Gong, Qisen Ren, Yehong Liao, Xiaotao Zu & Haiyan Xiao. (2023) The effects of Xe/Cs occupation on the thermal transport properties of U3Si: A first-principles study. Journal of Nuclear Materials 586, pages 154657.
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Katelyn Wada, Austin Fleming, Joshua Eixenberger, Brian J. Jaques & David Estrada. (2023) Transient multilayer analytical model of a line heat source probe for in-pile thermal conductivity measurements. International Journal of Thermal Sciences 188, pages 108241.
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Richard J. Wilbraham, Elizabeth A. Howett, Colin Boxall, David I. Hambley & Jessica K. Higgins. (2022) Simulated advanced gas-cooled reactor spent nuclear fuels: Determination of the O/U ratio - an XRD, XPS and Raman study. Journal of Nuclear Materials 568, pages 153867.
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Ziqiang Wang, Miaosen Yu, Chen Yang, Xuehao Long, Ning Gao, Zhongwen Yao, Limin Dong & Xuelin Wang. (2022) Effect of Radiation Defects on Thermo–Mechanical Properties of UO2 Investigated by Molecular Dynamics Method. Metals 12:5, pages 761.
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David H. Hurley, Anter El-Azab, Matthew S. Bryan, Michael W. D. Cooper, Cody A. Dennett, Krzysztof Gofryk, Lingfeng He, Marat Khafizov, Gerard H. Lander, Michael E. Manley, J. Matthew Mann, Chris A. Marianetti, Karl Rickert, Farida A. Selim, Michael R. Tonks & Janelle P. Wharry. (2021) Thermal Energy Transport in Oxide Nuclear Fuel. Chemical Reviews 122:3, pages 3711-3762.
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Allison A. Peroutka, Mikaela M. Pyrch, James M. Williams, Maurice K. Payne & Tori Z. Forbes. (2021) Exploring competitive metal binding and crystallization of UO22+ and Cu2+ tetrahydrofuran-2,3,4,5-tetracarboxylic acid complexes. Polyhedron 194, pages 114904.
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M.J. Qin, S.C. Middleburgh, M.W.D. Cooper, M.J.D. Rushton, M. Puide, E.Y. Kuo, R.W. Grimes & G.R. Lumpkin. (2020) Thermal conductivity variation in uranium dioxide with gadolinia additions. Journal of Nuclear Materials 540, pages 152258.
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M.J. Rahman, B. Szpunar & J.A. Szpunar. (2020) Dependence of thermal conductivity on fission-product defects and vacancy concentration in thorium dioxide. Journal of Nuclear Materials 532, pages 152050.
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Dragos Staicu. 2020. Comprehensive Nuclear Materials. Comprehensive Nuclear Materials 149 172 .
Courtney Hollar, Austin Fleming, Kurt Davis, Ralph Budwig, Colby Jensen & David Estrada. (2019) A parametric study for in-pile use of the thermal conductivity needle probe using a transient, multilayered analytical model. International Journal of Thermal Sciences 145, pages 106028.
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A. Rafi M. Iasir, Nickie J. Peters & Karl D. Hammond. (2018) Estimation of effective thermal conductivity in U-10Mo fuels with distributed xenon gas bubbles. Journal of Nuclear Materials 508, pages 159-167.
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Wei Zhou & Wenzhong Zhou. (2018) Enhanced thermal conductivity accident tolerant fuels for improved reactor safety – A comprehensive review. Annals of Nuclear Energy 119, pages 66-86.
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A.R. Massih. (2017) Electronic transport in pure and doped UO 2. Journal of Nuclear Materials 497, pages 166-182.
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D. Staicu. 2017. Reference Module in Materials Science and Materials Engineering. Reference Module in Materials Science and Materials Engineering.
Yeong-Keong Ha, Jeongmook Lee, Jong-Goo Kim & Jong-Yun Kim. (2016) Effect of Ce doping on UO2 structure and its oxidation behavior. Journal of Nuclear Materials 480, pages 429-435.
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Patricia B. Weisensee, Joseph P. Feser & David G. Cahill. (2013) Effect of ion irradiation on the thermal conductivity of UO2 and U3O8 epitaxial layers. Journal of Nuclear Materials 443:1-3, pages 212-217.
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D. Staicu. 2012. Comprehensive Nuclear Materials. Comprehensive Nuclear Materials 439 464 .
Rudy J. M. Konings, Thierry Wiss & Christine Guéneau. 2011. The Chemistry of the Actinide and Transactinide Elements. The Chemistry of the Actinide and Transactinide Elements 3665 3811 .
Paul Van Uffelen, Rudy J. M. Konings, Carlo Vitanza & James Tulenko. 2010. Handbook of Nuclear Engineering. Handbook of Nuclear Engineering 1519 1627 .
Kosuke Tanaka, Masahiko Osaka, Ken Kurosaki, Hiroaki Muta, Masayoshi Uno & Shinsuke Yamanaka. (2011) Effect of Americium and Simulated Fission Products Addition on Oxygen Potential of Uranium-Plutonium Mixed Oxide Fuels. MRS Proceedings 1215.
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Kyoichi Morimoto, Masato Kato, Masahiro Ogasawara & Motoaki Kashimura. (2008) Thermal conductivities of hypostoichiometric (U, Pu, Am)O2−x oxide. Journal of Nuclear Materials 374:3, pages 378-385.
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Claudio Ronchi. (2007) Thermophysical properties affecting safety and performance of nuclear fuel. High Temperature 45:4, pages 552-571.
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