Study of Thermal Conductivity of Nano-fluids Containing Gold Nanoparticles Using Moiré Deflectometry

M. R. Huyeh, Parisa Goudarzi, S. Rasouli
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引用次数: 1

Abstract

ABSTRACT In this report is presented a simple and accurate method based on moire deflectometry for studying of nanofluids' thermal conductivity, containing gold nanoparticles suspended in a liquid medium. A collimated laser beam passes through a cell of nanofluids and then enters a moire deflectometer. Due to a temperature gradient in the nanofluids, a prism-like medium is formed. The propagation direction of the beam is changed and the moire fringes are displaced. Finally, thermal conductivity of the nano-fluids may be determined from the moire fringe displacement. The temperature gradient is then calculated using a simple model based on the Fourier law of heat transfer. This model is expected to reasonably predict the temporal evolution of nanofluid temperature gradient.
用莫尔维尔偏转法研究含金纳米颗粒纳米流体的导热性
摘要本文提出了一种基于云纹偏转法研究悬浮在液体介质中含金纳米颗粒的纳米流体导热性的简单、准确的方法。一束准直的激光束穿过一个纳米流体单元,然后进入一个云纹偏转计。由于纳米流体中的温度梯度,形成了棱镜状的介质。改变光束的传播方向,使云纹条纹发生位移。最后,纳米流体的热导率可以由莫尔条纹位移来确定。然后使用基于傅里叶传热定律的简单模型计算温度梯度。该模型有望合理地预测纳米流体温度梯度的时间演化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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