首页> 外文会议>Conference de I IIF sur les proprietes thermophysiques et processus de transfert des frigorigenes >MODELING OF A REGENERATIVE INDIRECT EVAPORATIVE COOLER FOR A DESICCANT COOLING SYSTEM
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MODELING OF A REGENERATIVE INDIRECT EVAPORATIVE COOLER FOR A DESICCANT COOLING SYSTEM

机译:用于干燥剂冷却系统的再生间接蒸发冷却器的建模

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This paper presents a numerical study of a regenerative indirect evaporative cooler, the so-called Dew Point Cooler (DPC), which is part of a Desiccant Cooling system that may both dehumidify and cool humid air. The DPC model is based on first principles using a 1D finite volume scheme and determines the steady state working conditions for the component. A sensitivity analysis of the DPC performance is carried out based on the air inlet conditions, air flow rate and recirculation fraction. A recirculation fraction around 0.3 maximizes the DPC net cooling capacity. The supply temperature is found to be mostly affected by the inlet humidity ratio. Manufacturer data are used to tune the model. The tuned DPC model is characterized by an area effectiveness coefficient which is kept constant at 0.55. The cooling capacity and water consumption estimated by the tuned model deviate within 3% and 8%, respectively from manufacturer data. The computed pressure drops deviates within 6% from manufacturer data.
机译:本文呈现了再生间接蒸发冷却器的数值研究,即所谓的露点冷却器(DPC),其是干燥剂冷却系统的一部分,其可以兼容潮湿的空气。 DPC模型基于使用1D有限卷方案的第一原理,并确定组件的稳态工作条件。基于空气入口条件,空气流速和再循环级分来进行DPC性能的灵敏度分析。再循环部分约为0.3最大化DPC净冷却能力。发现供应温度主要受入口湿度比的影响。制造商数据用于调整模型。调谐的DPC模型的特征在于区域有效系数,其在0.55处保持恒定。调谐模型估计的冷却能力和耗水量分别在制造商数据中偏离3%和8%。计算的压降偏离制造商数据的6%内。

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