Presentation 2003/5/23
Thermal Field Analysis for In Vitro Exposure Apparatus in Rectangular Waveguide with Transversal Slits
Rui TOKUNAGA, Yoichi OKAZAKI, Yukihisa SUZUKI, Masao TAKI, Kanako WAKE,
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Abstract(in English) Numerical studies are performed on the temperature distribution in a microwave exposure setup for in vitro study. The setup is a waveguide with slits, on which a cell culture dish is placed to be exposed to 2.45 GHz microwaves. The maximum SAR input power is 50 W/kg at the location of cells. The maximum temperature is 39.5℃ at an environmental temperature of 37℃, suggesting that the environmental temperature should be set about 2.5 degrees lower than the desirable temperature at the cells. The temporal characteristics of temperature elevation suggest that intermittent exposures cause little difference from continuous wave exposure because the time constant is large enough (≧900 s).
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Keyword(in English) SAR / thermal conductivity / coefficient of heat transmission / heat flux
Paper # EMCJ2003-13 (2003-05)
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Committee EMCJ
Conference Date 2003/5/23(1days)
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Registration To Electromagnetic Compatibility (EMCJ)
Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Thermal Field Analysis for In Vitro Exposure Apparatus in Rectangular Waveguide with Transversal Slits
Sub Title (in English)
Keyword(1) SAR
Keyword(2) thermal conductivity
Keyword(3) coefficient of heat transmission
Keyword(4) heat flux
1st Author's Name Rui TOKUNAGA
1st Author's Affiliation Graduate school of Engineering, Tokyo Metropolitan Univercity()
2nd Author's Name Yoichi OKAZAKI
2nd Author's Affiliation Graduate school of Engineering, Tokyo Metropolitan Univercity
3rd Author's Name Yukihisa SUZUKI
3rd Author's Affiliation Graduate school of Engineering, Tokyo Metropolitan Univercity
4th Author's Name Masao TAKI
4th Author's Affiliation Graduate school of Engineering, Tokyo Metropolitan Univercity
5th Author's Name Kanako WAKE
5th Author's Affiliation Communications Research Lab.
Date 2003/5/23
Paper # EMCJ2003-13 (2003-05)
Volume (vol) vol.103
Number (no) 101
Page pp.pp.-
#Pages 6
Date of Issue