Presentation 2011-01-13
Power Absorption Characteristics for Uniform Microwave Heating of Medium with High Conductivities
Yuki NAKAJIMA, Suguru IMAI, Kenji TAGUCHI, Tatsuya KASHIWA, Toshihide KITAZAWA, Masahiro SUZUKI, Kan-ichi FUJII,
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Abstract(in English) As a part of the nuclear fuel cycle, the MOX fuels for FBR are produced from Pu/U mixed nitrate solution obtained from spent fuel. In Japan, evaporation and de-nitration of Pu/U mixed nitrate solution have been carried out by using microwave heating. In this process, however, father improvements of heating uniformity and efficiency are eagerly required. Therefore, in microwave heating, it is very important to know power absorption characteristics of Pu/U mixed nitrate solution. In this study, power absorption characteristics of medium with high conductivities like Pu/U mixed nitrate solution were investigated taking the influence of the polarization of input waves and feeding positions of waveguide into account employing the FDTD method.
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Keyword(in English) microwave heating / Pu/U mixed nitrate solution / high conductivities / absorbed power / FDTD method
Paper # ED2010-178,MW2010-138
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Committee ED
Conference Date 2011/1/6(1days)
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Language JPN
Title (in Japanese) (See Japanese page)
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Title (in English) Power Absorption Characteristics for Uniform Microwave Heating of Medium with High Conductivities
Sub Title (in English)
Keyword(1) microwave heating
Keyword(2) Pu/U mixed nitrate solution
Keyword(3) high conductivities
Keyword(4) absorbed power
Keyword(5) FDTD method
1st Author's Name Yuki NAKAJIMA
1st Author's Affiliation Kitami Institute of Technology()
2nd Author's Name Suguru IMAI
2nd Author's Affiliation Kitami Institute of Technology
3rd Author's Name Kenji TAGUCHI
3rd Author's Affiliation Kitami Institute of Technology
4th Author's Name Tatsuya KASHIWA
4th Author's Affiliation Kitami Institute of Technology
5th Author's Name Toshihide KITAZAWA
5th Author's Affiliation Ritsumeikan University
6th Author's Name Masahiro SUZUKI
6th Author's Affiliation Japan Atomic Energy Agency
7th Author's Name Kan-ichi FUJII
7th Author's Affiliation Japan Atomic Energy Agency
Date 2011-01-13
Paper # ED2010-178,MW2010-138
Volume (vol) vol.110
Number (no) 358
Page pp.pp.-
#Pages 4
Date of Issue