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The effective thermal properties of solid foam beds: Experimental and estimated temperature profiles

机译:固体泡沫床的有效热性能:实验和估算温度曲线

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摘要

The effective radial heat conductivity of a solid foam packing and the wall heat transfer coefficient are determined under fluid flow conditions typical of catalytic reactors. A detailed 2-D heterogeneous model is phase-averaged in order to rigorously define lumped heat transfer parameters. The resulting pseudo-homogeneous model involves two fitting parameters only and it is successfully compared with experiments. First, experiments with packed extrudates validate the approach in comparison with known results. A second experiment with solid foams (polyurethane and SiC) allows correlating the radial heat conductivity to the nature of the solid, its morphology and fluid flow characteristics. The method is inspired from the correlations for particles and seems very promising. Conversely, determining the wall heat transfer coefficient yields only an average value (110 Wm~(-1) K~(-1) ± 15%) and correlation with fluid velocity is impossible in the studied range 0.018-0.32 m s~(-1).
机译:固体泡沫填料的有效径向热导率和壁传热系数在催化反应器典型的流体流动条件下确定。为了严格定义集总传热参数,对详细的二维异质模型进行了相位平均。所得的伪均质模型仅包含两个拟合参数,并且已与实验成功地进行了比较。首先,与填充挤出物进行的实验与已知结果相比,验证了该方法。使用固体泡沫(聚氨酯和SiC)的第二个实验允许将径向导热率与固体的性质,形态和流体流动特性相关联。该方法的灵感来自于粒子的相关性,似乎很有希望。相反,确定壁的传热系数仅得出平均值(110 Wm〜(-1)K〜(-1)±15%),并且在所研究的范围0.018-0.32 ms〜(-1)中不可能与流体速度相关。 )。

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