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Analysis on Electro-Thermal Property of Micro-Bubble Generator Using Carbon Nanotube Heating Elements

机译:碳纳米管加热元件微泡发生器电热性能分析

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Localized high temperature due to Joule heating in Carbon Nanotubes (CNTs) can generate micron-sized bubbles. Electro-thermal property of CNTs-based microbubble generator is characterized by finite element analysis in this paper. Water circumstance with volume in micrometer scale covering solid elements of the microdevice was considered. Temperature distribution and power input corresponding to microbubble nucleation at the centre of the heating elements were evaluated. Free water convection was used to set thermal boundary condition at the liquid-solid interface before micobubble generation. The steady-state, time-transient and parametric simulations have been performed. The results of relationship between power consumption, material properties such as thermal conductivity, and device configuration (such as the number of CNTs, electrode thickness, electrode gap, etc.) could be a guidance to the design and fabrication of this kind of microbubble generator.
机译:由于碳纳米管(CNT)中的焦耳加热(CNT)引起的局部高温可以产生微米尺寸的气泡。基于CNTS的微泡发生器的电热性能的特点是本文有限元分析。考虑了微米尺度覆盖微型细胞的固体元素的水量。评价对应于加热元件中心的微泡成核的温度分布和功率输入。在MiCobbble生成之前,使用自由水对流来设置液体固体界面的热边界条件。已经执行了稳态,时间瞬态和参数模拟。功耗之间的关系,材料特性,如导热率,以及器件配置(例如CNT,电极厚度,电极间隙等)可以是这种微泡发生器的设计和制造的指导。

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