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Measurement of the thermal conductivity of a water-based single-wall carbon nanotube colloidal suspension with a modified 3-co method

机译:改进的3-co方法测量水性单壁碳纳米管胶体悬浮液的导热系数

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摘要

A modified 3-ω method applied to a suspended platinum microwire was employed to measure the thermal conductivity and convective heat transfer coefficient of a water-based single-walled carbon nanotube (CNT) solution (metallic single-wall nanotubes with 1.33 nm diameter and 1.14 wt% concentration), and an expression for calculating the convective heat transfer coefficient in such a free convective fluid was introduced. The measurement technique was validated for three model systems including vacuum, air and deionized water. It is found that there is excellent agreement between these three model systems with theoretical predictions. In addition, the frequency dependence on the third harmonic response measured in deionized water reveals the existence of a very low working frequency below 60 mHz. The thermal conductivity and convective heat transfer coefficient of the nanofluid (water-based single-wall CNT solution) were determined to be 0.73 ± 0.013 W m~(-1) K~(-1) and 14900 ± 260 W m~(-2) K~(-1), respectively, which correspond to an enhancement of 19.4% in thermal conductivity and 18.9% in convective heat transfer as compared to water.
机译:将改进的3-ω方法应用于悬浮铂微丝,以测量水基单壁碳纳米管(CNT)溶液(直径为1.33 nm和1.14的金属单壁纳米管)的热导率和对流传热系数引入了一个重量百分比浓度),并计算了这种自由对流流体中对流传热系数的表达式。测量技术已针对包括真空,空气和去离子水在内的三种模型系统进行了验证。发现这三个模型系统与理论预测之间有很好的一致性。此外,频率对去离子水中测得的三次谐波响应的依赖性表明,存在低于60 mHz的极低工作频率。纳米流体(水基单壁CNT溶液)的导热系数和对流传热系数分别确定为0.73±0.013 W m〜(-1)K〜(-1)和14900±260 W m〜(- 2)K〜(-1)分别比水高19.4%和对流传热18.9%。

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