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Numerical determination of the heat transfer coefficient for volumetric air receivers with wire meshes

机译:丝网容积式储气罐传热系数的数值确定。

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Volumetric receivers made of metallic plain-weave wire meshes are a promising technology that could lead to many different designs and configurations. This work deals with the numerical determination of the convective heat transfer coefficient between an air flow and stagger stacked plain-weave wire mesh screens that constitute the volumetric receivers. For that purpose, six geometries are studied with different geometrical characteristics, but with the constraint of finding pairs with similar porosities. The commercial code STAR-CCM + was used for the detailed geometries for solving the microscopic equations. The numerical methodology, boundary conditions and main assumptions are presented. Based on a parametrical study over the velocity and wall temperature for each analyzed mesh, a correlation of the local volumetric convective heat transfer was found and depends on the Reynolds and Prandtl numbers. The different correlations were compared among them and with literature data showing similar trends and order of magnitudes. One of the correlations obtained was validated by using it in a homogeneous equivalent model assuming a local thermal non-equilibrium between the solid and fluid phases. The results were compared to the temperature profiles computed by a detailed simulation and show a very good agreement.
机译:由金属平纹金属丝网制成的容积式接收器是一项很有前途的技术,可以导致许多不同的设计和配置。这项工作是对气流和构成容积接收器的交错堆叠的平纹金属丝网筛网之间对流传热系数的数值确定。为此,研究了六个具有不同几何特征的几何形状,但是要寻找具有相似孔隙率的对。商业代码STAR-CCM +用于解决微观方程的详细几何形状。提出了数值方法,边界条件和主要假设。基于对每个分析网格的速度和壁温的参数研究,发现了局部体积对流换热的相关性,并且取决于雷诺数和普朗特数。比较了它们之间的不同相关性,并与显示相似趋势和数量级的文献数据进行了比较。假设固相和液相之间存在局部热不平衡,则可以通过在均质等效模型中使用它来验证所获得的相关性之一。将结果与通过详细模拟计算得出的温度曲线进行比较,并显示出很好的一致性。

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