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首页> 外文期刊>ACS Omega >Effects of Macroparameters on the Thickness of an Interfacial Nanolayer of Al2O3– and TiO2–Water-Based Nanofluids
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Effects of Macroparameters on the Thickness of an Interfacial Nanolayer of Al2O3– and TiO2–Water-Based Nanofluids

机译:大丙酰胺对Al2O3和TiO2 - 水基纳米流体界面纳米厚度的影响

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In this paper, thicknesses of interfacial nanolayers of alumina-deionized water (DW) and titanium dioxide-deionized water (DW) nanofluids are studied. Thermal conductivities of both nanofluids were measured in a temperature range of 298 to 353 K at particle volume ratios of 0.2 to 1.5% by experiments. A theoretical model considered both the effects of the interfacial nanolayer and Brownian motion is developed for thermal conductivity. A relational expression between nanolayer thickness and bulk temperature and volume fraction of particles of nanofluids is derived from the theoretical model. With the experimental data of thermal conductivity, changes of nanolayer thickness with nanofluids macroscopic properties (bulk temperature and particle volume ratio) are obtained. The present results show that nanolayer thickness increases with fluid temperature almost linearly and decreases with particle volume fraction in a power law. Based on the present results, simple formulas of interfacial nanolayer thickness as a function of fluid temperature and particle volume fraction are proposed for both water-based nanofluids.
机译:本文研究了氧化铝 - 去离子水(DW)和二氧化钛 - 去离子水(DW)纳米流体的介质纳米层的厚度。通过实验在298至353k的温度范围内测量纳米流体的热导体,其颗粒体积比通过实验为0.2-1.5%。考虑了界面纳米层和布朗运动的效果的理论模型用于导热率。纳米层厚度与纳米流体颗粒的体积分数之间的关系表达源自理论模型。利用导热率的实验数据,获得纳米层厚度与纳米流体宏观性质(体积温度和颗粒体积比)的变化。本结果表明,纳米组厚度随着流体温度而增加,几乎线性地增加,并随动力法中的颗粒体积分数降低。基于本发明的结果,提出了作为流体温度和颗粒体积分数的界面纳米层厚度的简单公式,用于水基纳米流体。

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