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Effects of Slitted Fins on the Heat Transfer and Pressure Drop Characteristics of a Compact Heat Exchanger

机译:裂片翅片对紧凑型热交换器传热和压降特性的影响

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A compact heat exchanger which consists of air-cooled aluminium fins and copper tubes circulating refrigerant has been used in a cooling system for a long time. There are two key parameters to be seriously considered for a design of the heat exchanger and its performance improvement. These are the heat transfer rate and pressure drop coefficient which varies with the change of the tube size, its arrangement and the fin configuration. In here, a numerical study was carried to understand the effect of the fin configuration on the heat transfer and pressure drop of the heat exchanger. The diameter and the arrangement of tubes were fixed but three different types of the fin configuration were used to see its effect on the heat transfer capacity and the static pressure drop. The calculation results were compared with that of a flat plate fin. From the comparison, it was found that the slitted fins have higher pressure drop; however, they have higher heat transfer rate. It means that the simpler of the fin configuration, the lower pressure drop and heat transfer coefficients are obtained. It is mainly due to the discretisation of the thermal boundary layer on the fin surface to maximise the heat transfer to air. The slitted sides of fins act like obstacles in the airflow path. From the experimental result, it was found that the same trend in the variation of the heat transfer rate and the pressure drop with the change of the fin configuration was obtained.
机译:由气冷铝翅片和铜管组成的紧凑型热交换器已经在冷却系统中使用了很长时间。有两个关键参数被认真考虑了热交换器的设计及其性能改进。这些是随着管尺寸的变化,其布置和翅片配置而变化的传热速率和压降系数。在这里,携带数值研究以了解鳍片配置对热交换器的传热和压降的影响。管的直径和排列是固定的,但是使用三种不同类型的翅片构型来看待其对传热容量和静压降的影响。将计算结果与平板翅片进行比较。从比较中,发现碎片具有更高的压降;然而,它们具有更高的传热速度。它意味着获得翅片配置的更简单,降低压降和传热系数。主要是由于翅片表面上的热边界层的离散化,以使热传递最大化到空气中。鳍的狭缝侧面像气流路径中的障碍物一样。从实验结果中发现,获得了传热速率变化和随着翅片结构的变化的变化相同的趋势。

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