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Experimental investigation on heat transfer characteristics during melting of a phase change material with dispersed TiO_2 nanoparticles in a rectangular enclosure

机译:矩形外壳中分散有TiO_2纳米粒子的相变材料熔融过程中传热特性的实验研究

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This paper presents an experimental investigation on the melting process of n-octadecane as a phase change material (PCM) with dispersed titanium oxide (TiO_2) nanoparticles. Experiments were performed in a rectangular enclosure heated at constant rates from one vertical side corresponding to Rayleigh numbers in the range 0.57 × 10~8-43.2 × 10~8 and Stefan number in the range 5.7-23.8. The rheological behavior of liquid PCM/TiO_2 at the mass fractions of 2 and 4% tended to Bingham fluids, thus the melting experiment was conducted for Bingham numbers in the range 0-31.1. Heat transfer during melting was characterized by visualizing the solid-liquid interface as well as recording the temperature distribution in the enclosure. Experimental results showed that at the initial stage of melting, heat transferred by conduction, and at later times, natural convection dominated heat transfer. Dispersing TiO_2 nanoparticles led to increase in Bingham number and consequently the natural convection and melting rate deteriorated. Two correlations were proposed to predict the Nusselt number and melted volume fraction as a function of Fourier number, Rayleigh number, Stefan number, Bingham number and mass fraction of nanoparticles.
机译:本文对正十八烷作为相变材料(PCM)与分散的氧化钛(TiO_2)纳米粒子的熔融过程进行了实验研究。实验是在一个矩形外壳中进行的,该矩形外壳从一个垂直侧以恒定速率加热,对应的瑞利数在0.57×10〜8-43.2×10〜8范围内,而斯特凡数在5.7-23.8之间。质量分数为2%和4%的液态PCM / TiO_2的流变行为趋于宾汉姆流体,因此针对宾汉姆数在0-31.1范围内进行了熔融实验。熔融过程中的热传递通过可视化固液界面以及记录外壳中的温度分布来表征。实验结果表明,在熔化的初始阶段,热量通过传导传递,而在以后的时间里,自然对流主导着热量的传递。分散的TiO_2纳米颗粒导致宾厄姆数增加,因此自然对流和熔融速率降低。提出了两种相关性来预测纳塞尔数和熔融体积分数与纳米粒子的傅里叶数,瑞利数,斯特凡数,宾汉数和质量分数的关系。

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