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Unexpected sharp peak in thermal conductivity of carbon nanotubes water-based nanofluids

机译:碳纳米管水基纳米流体的热导率出乎意料的尖峰

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We report here the thermal conductivity measurement of carbon nanotubes water-based nanofluids stabilized by sodium dodecylbenzene sulfonate as a function of volume fraction and temperature. For the first time, we further show the existence of a sharp peak in thermal conductivity at very small volume fraction below theoretical percolation threshold which is temperature independent. This preliminary study evidences the potential of promising and useful nanofluid for practical applications in cooling and energy systems and heat exchangers, as viscosity penalty is obviously vanished at this concentration.
机译:我们在这里报告的碳纳米管通过十二烷基苯磺酸钠稳定的碳纳米管水基纳米流体的热导率测量作为体积分数和温度的函数。首次,我们进一步显示了在低于理论渗滤阈值(与温度无关)的很小体积分数下,导热系数存在一个尖峰。这项初步研究证明,在冷却,能源系统和热交换器的实际应用中,有前景且有用的纳米流体的潜力,因为在此浓度下粘度损失明显消失了。

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