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Combined effects of holes and winglets on chevron plate-fins to enhance the performance of a plate-fin heat exchanger working with nanofluid

机译:孔和小翼对人字形板翅片的综合影响,以增强与纳米流体一起工作的板翅式热交换器的性能

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The current work reports an experimental study on hydrothermal improvement in a chevron plate-fin heat exchanger combined with holes and winglets. The experiments are performed for water flow through a test square duct fitted with enhanced chevron plate-fins for the Reynolds number from 4000 to 10000. Characteristics of the enhanced chevron plate-fins include three waviness aspect ratios and four different arrangements of holes and winglets at a constant diameter of holes and width/height of winglets. An overall performance factor is applied to obtain the optimal geometry. Then, only the optimal geometries are applied to find out the effect of Al2O3/water nanofluid flow on the performance of a plate-fin heat exchanger. In comparison to simple chevron plate-fins, the enhanced ones would increase the Nusselt number by a factor between 1.05% and 1.6%. In addition, simultaneous application of the optimal enhanced chevron plate-fins and the nanofluid could increase the Nusselt number. The best working conditions of this system are detected for the nanofluid at a weight fraction of 0.3%.
机译:当前的工作报告了在结合孔和小翼的人字形板翅式换热器中进行水热改善的实验研究。实验是对流经装有雷管数为4000至10000的增强人字形板翅片的测试方管进行的。增强人字形板翅片的特征包括三个波纹长宽比以及四个不同的孔和小翼排列。恒定的孔直径和小翼的宽度/高度。应用总体性能因数以获得最佳几何形状。然后,仅应用最佳几何形状来找出Al2O3 /水纳米流体流对板翅式换热器性能的影响。与简单的V形人字形翅片相比,增强型翅片可将Nusselt数增加1.05%至1.6%。另外,同时使用最佳增强的V形人字形翅片和纳米流体可以增加Nusselt数。对于纳米流体,以0.3%的重量分数检测到该系统的最佳工作条件。

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