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首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Air flow through confined metal foam passage: Experimental investigation and mathematical modelling
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Air flow through confined metal foam passage: Experimental investigation and mathematical modelling

机译:气流通过密闭的金属泡沫通道:实验研究和数学建模

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This paper deals with flow behaviour through a confined passage filled with metal foams (MFs). Two sets (four samples) of aluminium foams of 20 and 40 ppi pore densities with 9-11% and 12-16% relative densities (RD) individually (as per supplier's specification) were used for the study. Former RD belonged to uncompressed metal foams whereas the later was achieved by unidirectional compression of metal foam of 6-8% RD. Measured porosities of the uncompressed 20 and 40 ppi MF samples were equal, which was 0.88. However, measured porosities were 0.83 and 0.86 for compressed 20 and 40 ppi MF samples. Flow characteristics of both compressed and uncompressed samples were experimentally measured. Fourie-Plessis's representative unit cell (RUC) model was used as an analytical tool for estimating pressure drop gradient through MFs because of its simplistic approach and independency from flow characteristics. Possible encasing wall effect on pressure drop was theoretically conducted. Due to a significant difference in estimated and experimentally obtained pressure drop gradient, authors have proposed a modification in the RUC model. The modified version of the RUC model was able to estimate pressure drop gradient of the uncompressed samples with a considerably higher accuracy.
机译:本文通过填充金属泡沫(MFS)的限制通道来处理流动行为。研究的两组(四个样本)的铝泡沫的泡沫泡沫,单独(根据供应商的规范单独使用9-11%和12-16%的相对密度(RD)。前RD属于未压缩的金属泡沫,而后以6-8%RD的金属泡沫的单向压缩实现。未压缩20和40ppi MF样品的测量孔隙率等于0.88。然而,对于压缩的20和40 ppi MF样品,测量的孔隙率为0.83和0.86。通过实验测量压缩和未压缩样本的流动特性。 Fourie-Plessis的代表性单元电池(RUC)模型用作估计压力下降梯度通过MFS的分析工具,因为其流动特性的自然方法和独立性。理论上进行了对压降的容纳壁效应。由于估计和实验获得的压降梯度有显着差异,作者提出了RUC模型中的修饰。 RUC模型的修改版本能够估计未压缩样本的压力下降梯度,精度相当更高。

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