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Hierarchic modeling of heat transfer processes in heat exchangers

机译:换热器中传热过程的层次建模

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An alternate approach based on hierarchic modeling is proposed to simulate fluid and heat flow in heat exchangers. On the first level, the direct simulations have been performed for the geometry that is similar to a segment of the examined heat sink. Based on the obtained results, the Reynolds number dependencies of the scaling factors f and StPr~(2/3) have been established. On the second level, the integral model of the whole heat sink has been built using the volume averaging technique (VAT). The averaging of the transport equations leads to a closure problem. The direct model Reynolds number dependencies f and StPr~(2/3) have been used to calculate the local values of the drag coefficient C_d and the heat transfer coefficient v, which are needed in the integral model. The example calculations have been performed for 14 different pressure drops Δp across the aluminum heat sink. The whole-section drag coefficient C_d and Nusselt number Nu have been calculated and compared with the experimental data [M. Rizzi, M. Canino, K. Hu, S. Jones, V. Travkin, I. Catton, Experimental investigation of pin fin heat sink effectiveness, in: Proc. of the 35th National Heat Transfer Conference Anaheim, California, 2001], A good agreement between the modeling results and the experiment data has been reached with same discrepancies in the transitional regime. The constructed computational algorithm offers possibilities for geometry improvements and optimization, to achieve higher thermal effectiveness.
机译:提出了一种基于层次建模的替代方法来模拟热交换器中的流体和热流。在第一层上,已经对与所检查的散热器的一部分相似的几何形状执行了直接仿真。基于获得的结果,建立了缩放因子f和StPr〜(2/3)的雷诺数依赖性。在第二层,使用体积平均技术(VAT)建立了整个散热器的积分模型。输运方程的平均导致封闭问题。直接模型雷诺数依赖性f和StPr〜(2/3)已用于计算积分模型中所需的阻力系数C_d和传热系数v的局部值。已经针对铝散热器上的14个不同的压降Δp进行了示例计算。计算了整个截面的阻力系数C_d和Nusselt数Nu,并将其与实验数据进行比较[M. Rizzi,M. Canino,K.Hu,S.Jones,V.Travkin,I.Catton,针鳍散热片有效性的实验研究,作者:Proc。在美国加利福尼亚州阿纳海姆市,第35届全国传热大会(2001年)中,建模结果与实验数据之间达成了很好的一致,但在过渡方案中存在相同差异。构造的计算算法为改进和优化几何形状提供了可能,以实现更高的热效率。

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