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首页> 外文期刊>Journal of nanoscience and nanotechnology >Spreading Characteristics of Nanofluid Droplets Impacting onto a Solid Surface
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Spreading Characteristics of Nanofluid Droplets Impacting onto a Solid Surface

机译:纳米流体液滴撞击固体表面的扩散特性

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This paper reports an experimental investigation on the spreading characteristics of nanofluid droplets impinging on aluminum substrate under the influence of several key factors such as nanoparticle volume fraction, substrate temperature, and the Weber number. Sample nanofluid used is prepared by dispersing several volumetric concentrations (1 to 5%) of titanium dioxide nanoparticles in ethylene glycol. The entire dynamic process of each droplet collision with the substrate surface and the spreading phenomena is captured by using a high speed camera and then the transient spreading diameter and height of droplet are determined. It is found that the higher the concentration of nanoparticles the larger the spreading diameter of nanofluid droplet. As the surface temperature increases, the overall spreading diameter and height of nanofluid droplet significantly decreases and increases, respectively. At larger Weber number, the final spreading of the nanofluid droplet is also found to be larger than that of lower Weber number. Present results demonstrate that spreading characteristics of nanofluid droplets impacting onto solid surface are greatly influenced by each of the aforementioned factors.
机译:本文报道了在纳米粒子体积分数,基板温度和韦伯数等几个关键因素影响下,纳米流体液滴撞击铝基板的扩散特性的实验研究。通过将几种体积浓度(1-5%)的二氧化钛纳米颗粒分散在乙二醇中来制备所用的样品纳米流体。每个液滴与基板表面碰撞以及散布现象的整个动态过程都通过使用高速相机捕获,然后确定液滴的瞬时散布直径和高度。发现纳米颗粒的浓度越高,纳米流体液滴的散布直径越大。随着表面温度的升高,纳米流体液滴的总扩散直径和高度分别显着降低和增加。在较大的韦伯数下,还发现纳米流体液滴的最终散布比较低的韦伯数大。目前的结果表明,纳米流体液滴撞击到固体表面的散布特性受到上述每个因素的很大影响。

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