Energy Transport in Multiphase System (General)
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概要
- 論文の詳細を見る
Nonequilibrium energy transport phenomena are studied using molecular dynamics simulation. The system is made of hard-core particles which contact with the heat baths at the both ends: hot at left end, and cold at right end. In case of fluid, normal (Fourier-type) heat conduction is reproduced in three-dimensional system, but it is not observed in lower-dimensional systems. In solid-fluid coexisting state, the property of energy transport is different between each phase. Fourier-type heat conduction is reproduced, but the solid phase has larger thermal conductivity than the fluid phase. When hydrodynamic shear is induced at hot end, temperature profile of fluid phase is parabolic form but that of solid phase is straight one. These results suggest that continuum description can be applicable to much shorter length scales (for example, micrometer- or nanometer-scale technology) and in contrast, molecular dynamics approach in such scale systems can be used to study nonequilibrium macroscopic phenomena.
- 社団法人日本物理学会の論文
- 2003-05-15
著者
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YUKAWA Satoshi
Department of Earth and Space Science, Osaka University
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SHIMADA Takashi
Department of Applied Physics, The University of Tokyo
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ITO Nobuyasu
Department of Applied Physics, The University of Tokyo
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Shimada T
Department Of Applied Physics The University Of Tokyo
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MURAKAMI Teruyoshi
Department of Applied Physics, School of Engineering, The University of Tokyo
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Ito Nobuyasu
Department Of Applied Physics The University Of Tokyo
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Ito Nobuyasu
Department Of Applied Physics Faculty Of Engineering The University Of Tokyo
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Yukawa S
Department Of Applied Physics University Of Tokyo
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Yukawa Satoshi
Department Of Applied Physics Graduate School Of Engineering The University Of Tokyo:department Of E
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Murakami T
Department Of Applied Physics School Of Engineering The University Of Tokyo
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Shimada Takashi
Department Of Applied Physics School Of Engineering The University Of Tokyo
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Shimada Takashi
Department of Applied chemistry, Kinki University School of Science and Technology
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Ito Nobuyasu
Department of applied Physics
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