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Melting processes of phase change materials in an enclosure with a free-moving ceiling: An experimental and numerical study

机译:自由移动的顶棚内相变材料的熔化过程:实验和数值研究

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This work aims to examine, via a complementary approach of experimental measurement and numerical simulation, transient transport processes associated with melting of a phase change material (PCM) placed inside a vertical rectangular enclosure with a free-moving ceiling. The core phase change material is n-octadecane with melting temperature about T_m = 28 ℃. The vertical side walls of the enclosure were differentially heated isothermally while the remaining side walls were thermally insulated. Experiments have been undertaken for the air-saturated enclosure filled with MECPCM particles with the relevant parameters in the following ranges: the enclosure aspect ratio Asp = 24; the subcooling number Sc= 1.06-11.5; Stefan number Ste= 0.179-0.370; and the Rayleigh number Ra = 0.897-8.60 × 10~8. Meanwhile, numerical simulations have been performed based on a mathematical modeling mimicking the experimental configuration considered to further elucidate the transient transport processes of the free-moving ceiling of the enclosure. Finally, the formula of the dimensionless displacement of the top ceiling subjected to various thermal conditions are proposed and correlated with the related parameters, including the Stefan number Ste, the subcooling parameter Sc, Rayleigh number Ra and the Fourier number Fo.
机译:这项工作旨在通过实验测量和数值模拟的补充方法,研究与放置在带有自由移动天花板的垂直矩形外壳内的相变材料(PCM)熔化相关的瞬态传输过程。核心相变材料是正十八烷,熔化温度约为T_m = 28℃。外壳的垂直侧壁被等温差温加热,而其余侧壁则被隔热。已经对填充有MECPCM颗粒的空气饱和的外壳进行了实验,其相关参数在以下范围内:外壳纵横比Asp = 24;过冷数Sc = 1.06-11.5; Stefan数Ste = 0.179-0.370;瑞利数Ra = 0.897-8.60×10〜8。同时,已经基于数学模型进行了数值模拟,该数学模型模仿了被认为是进一步阐明外壳自由移动的天花板的瞬态传输过程的实验配置。最后,提出了在各种热工条件下顶棚无因次位移的公式,并与Stefan数Ste,过冷参数Sc,Rayleigh数Ra和Fourier数Fo等相关参数相关联。

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