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STUDY OF THERMAL CONDUCTIVITY IN NANOPOROUS THIN FILM AND NANOCOMPOSITES

  • School of Energy and Power Engineering

科研成果: 书/报告/会议事项章节会议稿件同行评审

摘要

The Phonon Boltzmann Transport Equation (BTE) is solved by using the Discrete Ordinates Method to numerically study the phonon thermal conductivity in nanoporous silicon thin film and nanocomposites. The frequency-dependent phonon transport is considered to solve the phonon BTE. We study the effect of pore geometry on phonon energy transport in silicon thin film by fixing the porosity and interface area, respectively. The thermal conductivity in three-dimensional thin film are numerically computed by considering the size effect and we show the difference by comparing the results with those of two-dimensional thin film. The thermal conductance in the third direction is taken into account in the three-dimensional silicon thin film, which is more accurate than the two-dimensional thin film model. The phonon BTE model is also employed to study the thermal conductivity of three-dimensional nanocomposites (silicon nanoparticles embedded in Germanium host matrix). The effects of the nanocomposite size, silicon percentage, and the interface area on the thermal conductivity are discussed.

源语言英语
主期刊名International Heat Transfer Conference 15
出版商Begell House Inc.
1431-1442
页数12
ISBN(印刷版)9781567004212
DOI
出版状态已出版 - 2014
已对外发布
活动15th International Heat Transfer Conference, 2014 - Kyoto, 日本
期限: 10 8月 201415 8月 2014

丛书

姓名International Heat Transfer Conference
ISSN(印刷版)2377-424X

会议

会议15th International Heat Transfer Conference, 2014
国家/地区日本
Kyoto
时期10/08/1415/08/14

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