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Experimental investigation of adverse effect of frost formation on microchannel evaporators, part 1: Effect of fin geometry and environmental effects

机译:结霜对微通道蒸发器不利影响的实验研究,第1部分:翅片几何形状的影响和环境影响

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摘要

This study experimentally investigated the frost growth on louvered folded fins in micro-channel heat exchangers when used in outdoor air-source heat pump systems. The effects of surface temperature, fin geometries, and air environmental conditions were studied. The overall aim was to isolate and quantify the effect of geometry from surface temperature effects. Experimental data of frost weight, local frost thickness, air pressure drop across the coils, time of frost-defrost cycles and heat transfer rates were recorded. Data showed that the frosting time and the frost growth rates depended mainly on the local fin surface temperature. Lower fin density was beneficial because it delayed the blockage of the air flow. The fin length and fin depth had minor effects on frosting performance. The air humidity had a fairly significant effect on rate of frost formation while air velocity seemed to have a small effect on the frost growth rate.
机译:这项研究通过实验研究了在室外空气源热泵系统中使用时,微通道换热器中百叶窗式折叠翅片上的霜冻生长情况。研究了表面温度,散热片几何形状和空气环境条件的影响。总体目标是从表面温度影响中分离和量化几何形状的影响。记录了霜冻重量,局部霜冻厚度,盘管上的气压下降,霜冻-除霜循环时间和传热速率的实验数据。数据表明,结霜时间和结霜增长率主要取决于局部散热片表面温度。较低的翅片密度是有利的,因为它延迟了气流的阻塞。翅片长度和翅片深度对结霜性能影响很小。空气湿度对霜的形成速率有相当大的影响,而空气速度似乎对霜的生长速率影响很小。

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