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Particle size and interfacial effects on thermo-physical and heat transfer characteristics of water-based α-SiC nanofluids

机译:粒度和界面效应对水基α-SiC纳米流体的热物理和热传递特性的影响

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摘要

The effect of average particle sizes on basic macroscopic properties and heat transfer performance of α-SiC/water nanofluids was investigated. The average particle sizes, calculated from the specific surface area of nanoparticles, were varied from 16 to 90nm. Nanofluids with larger particles of the same material and volume concentration provide higher thermal conductivity and lower viscosity increases than those with smaller particles because of the smaller solid/liquid interfacial area of larger particles. It was also demonstrated that the viscosity of water-based nanofluids can be significantly decreased by pH of the suspension independently from the thermal conductivity. Heat transfer coefficients were measured and compared to the performance of base fluids as well as to nanofluids reported in the literature. Criteria for evaluation of the heat transfer performance of nanofluids are discussed and optimum directions in nanofluid development are suggested.
机译:研究了平均粒径对α-SiC/水纳米流体基本宏观性能和传热性能的影响。由纳米颗粒的比表面积计算的平均粒径在16至90nm之间变化。具有相同材料和体积浓度的较大颗粒的纳米流体与较小颗粒的纳米流体相比,具有较高的导热性,并且粘度增加较小,这是因为较大颗粒的固/液界面面积较小。还证明了悬浮液的pH值可以独立于热导率显着降低水基纳米流体的粘度。测量了传热系数,并将其与基础流体的性能以及文献中报道的纳米流体进行了比较。讨论了评价纳米流体传热性能的标准,并提出了纳米流体发展的最佳方向。

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