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Experimental Study of Heat Conduction in Aqueous Suspensions of Aluminum Oxide Nanoparticles

机译:氧化铝纳米颗粒水悬浮液中导热的实验研究

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We report measurements of the thermal conductivity of aqueous suspensions of aluminum oxide nanoparticles with nominal diameters of 20 nm, 30 nm, and 45 nm and at volume concentrations up to 10%. Potential complications in the pulsed transient hot-wire technique for characterizing nanofluids are examined, which motivate the development of a microhot strip setup with a small thermal time constant. The average particle size is monitored for samples subjected to different durations of sonication and the thermal conductivity is determined at two different temperatures for each of the samples. The present data do not reveal any anomalous enhancement in the thermal conductivity previously reported for comparable nanofluids. The concentration dependence of the thermal conductivity can be explained using the conventional effective medium model with a physically reasonable set of parameters.
机译:我们报告了标称直径为20 nm,30 nm和45 nm且体积浓度最高为10%的氧化铝纳米颗粒水悬浮液的导热系数的测量结果。研究了用于表征纳米流体的脉冲瞬态热线技术中潜在的复杂性,这促使开发具有较小热时间常数的微热条装置。监测经受不同声处理持续时间的样品的平均粒度,并针对每个样品在两个不同温度下测定热导率。目前的数据没有揭示先前报道的可比较的纳米流体的导热系数的任何异常增强。可以使用具有物理合理参数集的常规有效介质模型来解释热导率的浓度依赖性。

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