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Quantum effects on thermal vibration of single-walled carbon nanotubes conveying fluid 被引量:2
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作者 Ye-Wei Zhang Lin Zhou +1 位作者 Bo Fang Tian-Zhi Yang 《Acta Mechanica Solida Sinica》 SCIE EI CSCD 2017年第5期550-556,共7页
In this paper, we investigate the microfluid induced vibration of a nanotube in thermal environment. Attention is focused on a special case that the law of energy equipartition is unreliable unless the quantum effect ... In this paper, we investigate the microfluid induced vibration of a nanotube in thermal environment. Attention is focused on a special case that the law of energy equipartition is unreliable unless the quantum effect is taken into account. A nonlocal luler-Bernoulli beam model is used to model the transverse vibration of a single-walled nanotube (SWCNT). Results reveal that the root of mean squared (RMS) amplitude of thermal vibration of the fluid-conveying SWCNT predicted from the quantum theory is lower than that predicted from the law of energy equipartition. The quantum effect on the thermal vibration of the fluid-conveying SWCNT is more significant for the cases of higher-order modes, lower flow velocity, lower temperature, and lower fluid density. 展开更多
关键词 Quantum effectsLaw of energy equipartitionFluid-conveying SWCNTEuler beam theoryRoot of mean-squared amplitude
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