The Influence Of The Inlet Conditions On The Airside Heat Transfer Performance Of Plain Finned Evaporator

Abdenour Bourabaa, M. Saighi, I. Belal
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引用次数: 8

Abstract

A numerical study has been conducted to investigate the influence of fin pitch and relative humidity on the heat transfer performance of the fin-and-tube heat exchangers having plain fin geometry under dehumidifying conditions. The analysis is done using the ratio between the heat transfer coefficients in totally wet conditions and those in totally dry conditions using the appropriate correlations for both dry and wet conditions. For a constant relative humidity, it is found that the heat transfer coefficient increases with the increase of the air frontal velocity. By contrast, the fin efficiency decreases when the face velocity is increased. Apparently, this phenomenon is attributed to the path of condensate drainage. For the influence of relative humidity, the results showed an increase in heat transfer performance and a decrease in wet fin efficiency when relative humidity increases. This is due to the higher amount of mass transfer encountered at higher relative humidity. However, it is found that the effect of fin pitch on the heat transfer performance depends strongly on the face velocity. At lower frontal velocity the heat transfer increases with fin pitch. Conversely, an increase in fin pitch gives lower heat transfer coefficients when air velocity is increased.
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进口条件对平板翅片蒸发器空侧换热性能的影响
本文研究了除湿条件下,翅片间距和相对湿度对平面翅片管式换热器换热性能的影响。分析是利用全湿条件下的传热系数与全干条件下的传热系数之间的比值,利用干燥和潮湿条件下的适当相关性来完成的。当相对湿度一定时,传热系数随气流锋面速度的增大而增大。相反,翅片效率随着面速度的增加而降低。显然,这种现象归因于冷凝水排水路径。对于相对湿度的影响,结果表明,相对湿度增大时,换热性能提高,湿翅效率降低;这是由于在较高的相对湿度下遇到较高的传质量。然而,研究发现翅片间距对换热性能的影响很大程度上取决于面速度。在较低的前缘速度下,换热随翅片间距增大而增大。相反,当空气速度增加时,翅片间距的增加会降低传热系数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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