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Acoustics and thermal studies of conventional heat transfer fluids mixed with ZnO nano flakes at different temperatures

机译:常规传热流体与ZnO纳米片混合在不同温度下的声学和热学研究

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摘要

The present investigation is mainly focused upon the effect of adding zinc oxide nano particles in the conventional heat transfer fluid involving the mixture of ethylene glycol & water (EG-water). Efforts have been made to synthesize zinc oxide nano particles by precipitation technique and to blend with EG-water to prepare nanofluids using ultrasonication. From the characterization, the shapes of the particles were found to be agglomerated nano flakes. The ultrasonic velocity and transport properties have been measured to characterize the nanofluids and they also shed light on the molecular environment of the dispersed phase at different temperatures. The dynamic viscosity shows the nanofluids to be non-Newtonian fluids at very less shear rate. In addition, the stability of the nanofluid is being interpreted from UV-visible study.
机译:目前的研究主要集中在将传统的传热流体中添加氧化锌纳米粒子的效果,其中传热流体涉及乙二醇和水(EG-水)的混合物。已经努力通过沉淀技术合成氧化锌纳米颗粒,并与EG-水共混以使用超声处理制备纳米流体。通过表征,发现颗粒的形状是附聚的纳米薄片。已经测量了超声速度和传输性质以表征纳米流体,并且它们还阐明了在不同温度下分散相的分子环境。动态粘度表明纳米流体在非常低的剪切速率下为非牛顿流体。另外,纳米流体的稳定性可以从紫外可见研究中得到解释。

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