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Detection of Nanoparticle Brownian Motions in a Nanofluid Using Laser Speckle Velocimetry

机译:使用激光散斑测速技术检测纳米流体中的纳米布朗运动。

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Nanofluids have much higher thermal conductivity than traditional heat transfer fluids owning to the existence within them of nanoparticles, even at a low particle concentration. Brownian motions of nanoparticles may contribute to the thermal conductivity enhancement. In this paper the motions of nanoparticles in a ferro-nanofluid flow were investigated with the laser speckle velocimetry (LSV) technique. Speckle patterns of the nanofluid were recorded by a CCD camera and processed with a cross-correlation algorithm to obtain nanofluid flow vectors. According to the findings, the overall motion trend of nanoparticles was along the pipe flow direction. To a small extent, however, nanoparticle motion vectors deviated from the axial direction. Further average processing over multiple vector diagrams yielded flow vectors obeyed typical laminar flow profile, which means that the derivations in flow direction were random in nature, and resulted from Brownian motions of the nanoparticles. The study indicates that LSV could be a useful tool for visualizing nanofluid flow.
机译:纳米流体具有比传统传热流体高的导热率,因为即使在低颗粒浓度下,纳米流体也存在于纳米流体中。纳米粒子的布朗运动可有助于导热率的提高。本文采用激光散斑测速技术研究了纳米颗粒在铁纳米流体中的运动。用CCD照相机记录纳米流体的斑点图案,并用互相关算法进行处理以获得纳米流体流动矢量。根据发现,纳米颗粒的整体运动趋势沿管道流动方向。然而,纳米粒子运动矢量在很小程度上偏离轴向方向。在多个向量图上进行进一步的平均处理后,得出的向量遵循典型的层流曲线,这意味着流动方向的导数本质上是随机的,并且是由纳米粒子的布朗运动引起的。研究表明,LSV可能是可视化纳米流体流动的有用工具。

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