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Thermal Performance Assessment for Laminar Forced Convection with Downstream Reformed-V and Reformed-Double-V Generators | Science Publications

机译:下游重整V和重整双V发电机层流强迫对流的热性能评估|科学出版物

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> Thermal assessments for laminar flow in an isothermal wall square channel over downstream Reformed-V (RV) and Reformed-Double-V (RDV) generators inserted diagonally are presented numerically in three dimensional. The RV and RDV are designed to comfort for forming and installing in the heat exchanger channel. The effect of RV and RDV height is investigated in terms of blockage ratio, b/H, BR = 0.05-0.30 for Reynolds number based on the hydraulic diameter of the square channel, Re = 100-1200. The SIMPLE algorithm, finite volume method and the periodic condition are used in the current computational domain. The mathematical results show that the uses of RV and RDV provide higher heat transfer rate than the smooth square channel with no generators. The RV gives higher on both heat transfer rate and friction factor values than the RDV case for all BR and Re values. The maximum heat transfer rate and friction factor are found around 20.5 and 420 times over the smooth square channel, respectively, at BR = 0.30 for RV case. The optimum thermal enhancement factor, TEF, is found at BR = 0.1, Re = 2000 around 2.95 for RDV case.
机译: >对角插入的下游Reformed-V(RV)和Reformed-Double-V(RDV)发生器等温壁方通道内层流的热评估以数字方式在三维中给出。 RV和RDV旨在舒适地在热交换器通道中成型和安装。根据阻塞比b / H研究RV和RDV高度的影响,对于雷诺数,BR = 0.05-0.30(基于方形通道的水力直径,Re = 100-1200)。在当前的计算领域中使用了SIMPLE算法,有限体积方法和周期条件。数学结果表明,与没有发电机的光滑方形通道相比,使用RV和RDV可以提供更高的传热速率。对于所有BR和Re值,RV的传热速率和摩擦系数值均高于RDV。在光滑的方形通道上,最大传热速率和摩擦系数分别约为20.5和420倍,对于RV情况,BR = 0.30。对于RDV,最佳热增强因子TEF为BR = 0.1,Re = 2000约为2.95。

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