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首页> 外文期刊>Nanoscale >Fast mass transport-assisted convective heat transfer through a multi-walled carbon nanotube array
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Fast mass transport-assisted convective heat transfer through a multi-walled carbon nanotube array

机译:快速大规模transport-assisted对流热通过多壁碳纳米管转移数组

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The recently reported fast mass transport through nanochannels provides a unique opportunity to explore nanoscale energy transport. Here we experimentally investigated the convective heat transport of air through vertically aligned multi-walled carbon nanotubes (VAMWNTs). The flow through the unit cell, defined as an interstitial space among four adjacent nanotubes (hydraulic diameter = 84.9 nm), was in the transition (0.62 Knudsen number 0.78) and creeping flow (3.83 x 10(-5) Reynolds number (Re) 1.55 x 10(-4)) regime. The constant heat flux (0.102 or 0.286 W m(-2)) was supplied by a single-mode microwave (2.45 GHz) instantly heating the VAMWNTs. The volume flow rate was two orders of magnitude greater than the Hagen-Poiseuille theory value. The experimentally determined convective heat transfer coefficient (h, 3.70 x 10(-4)-4.01 x 10(-3) W m(-2) K-1) and Nusselt number (Nu, 1.17 x 10(-9)-1.26 x 10(-8)) were small partly due to the small Re. A further increase in Re (2.12 x 10(-3)) with the support of a polytetrafluoroethylene mesh significantly increased h (5.48 x 10(-2) W m(-2) K-1) and Nu (2.37 x 10(-7)). A large number of nanochannels in a given cross-section of heat sinks may enhance the heat dissipation significantly.
机译:最近报道的质量快速运输纳米通道提供了独特的机会探索纳米能源运输。实验研究了对流热运输空气通过垂直对齐多壁碳纳米管(VAMWNTs)。通过单位细胞,定义为一个间隙四个相邻的碳纳米管(液压之间的空间直径= 84.9海里),在过渡(0.62克努森数0.78)和蠕动流(3.83 x10(5)雷诺数(Re) 1.55 x 10 (4))政权。(2))是由一个单模微波(2.45 GHz)立即加热VAMWNTs。体积流率是两个数量级大于Hagen-Poiseuille理论价值。通过实验确定对流热传递系数(h, 3.70 x 10 (4) -4.01 x10 (3) W m (2) k - 1)和努塞尔特数(ν,1.1710 (9) -1.26 x 10(8))是小的部分小的再保险。进一步增加(2.12 x10(3))的支持聚四氟乙烯网显著增加h (5.48 x 10 (2) W m (2) k - 1)和怒(2.37 x 10(7))。在给定截面的散热器显著增强散热。

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