Wall Deposition of Ultrafine Aerosol Particles by Thermophoresis in Nonisothermal Laminar Pipe Flow of Different Carrier Gas
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概要
- 論文の詳細を見る
Deposition of ultrafine aerosol particles by Brownian diffusion and thermophoresis in a nonisothermal laminar pipe flow is investigated theoretically and experimentally. The deposition rates of Ag and TiO_2 particles of 8-30 nm in diameter suspended either in N_2, Ar or He gas are measured using a circular pipe with a nonuniform wall temperature distribution. The numerical calculation results considering the gas flow, temperature and particle distributions in the pipe show good agreement with the measured values. The particle deposition is enhanced with the increase of the wall temperature variation, but does not depend on the particle material. The difference in the deposition rates among the carrier gases is mostly attributable to the values of the Brownian diffusion coefficient. The enhancement of deposition by thermophoresis is of a similar magnitude among the carrier gases, which is explained in terms of the temperature distribution of the gases in the pipe.
- 社団法人応用物理学会の論文
- 1994-02-15
著者
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OKUYAMA KIKUO
Department of Chemical Engineering, Graduate School of Engineering, Hiroshima University
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SHIMADA Manabu
Department of Chemical Engineering, Hiroshima University
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Shimada M
Ntt Microsystem Integration Lab. Kanagawa Jpn
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Shimada M
Hiroshima Univ. Higashi‐hiroshima
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Shimada Manabu
Department Of Chemical Engineering Faculty Of Engineering Hiroshima University
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Okuyama Kikuo
Department Of Chemical Engineering Faculty Of Engineering Hiroshima University
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Seto T
Shizuoka Johoku Senior High School Shizuoka Jpn
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Shimada M
Graduate School Of Natural Science And Technology Kanazawa University
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SETO Takafumi
Department of Chemical Engineering, Hiroshima University
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Seto Takafumi
Department Of Chemical Engineering Hiroshima University
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Seto Takafumi
Department Of Chemical And Material Engineering Kanazawa University
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