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首页> 外文期刊>Building and Environment >Thermal performance of a suspended ceiling fin heat transfer panel with drain pan
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Thermal performance of a suspended ceiling fin heat transfer panel with drain pan

机译:带有排水盘的吊顶翅片传热板的热性能

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Radiant air conditioning systems provide better comfort and energy efficiency than air conditioning systems based on forced convection. In order to prevent condensation, the surface temperature of the radiant heat transfer component in conventional radiant air conditioning must be maintained above the dew point temperature, resulting in insufficient cooling capacity. In this paper, a new type of suspended ceiling fin heat transfer panel with a drain pan is proposed to achieve a large temperature difference for the cooling/heating supply. This panel has the characteristics of large heat flux per unit area, sufficient cooling capacity, and simplified heat exchange system. The research results show that the heat flux of the fin heat transfer panel accounts for 90%. In a comparison of the suspended ceiling radiant panels of different structures, the suspended ceiling fin heat transfer panel may be used with a refrigerant with a lower temperature relative to the other two structures and has great potential to improve heat flux, which can reduce the installation area of indoor radiant panels. Finally, the structure of the fin heat transfer panel was optimised. When the fin spacing of the fin heat transfer panel was 5.2 mm, the cooling/heating capacity of the fins was improved by a factor of 1.5 compared to the panel with the original spacing of 1.8 mm, and the metal material required was reduced to approximately 33% of the total. These results serve as a theoretical and practical reference for the study of such air conditioning systems.
机译:辐射式空调系统比基于强制对流的空调系统提供更好的舒适度和能源效率。为了防止冷凝,常规辐射空调中的辐射传热组件的表面温度必须保持在露点温度以上,从而导致冷却能力不足。本文提出了一种新型的带排水盘的吊顶翅片传热板,以实现大的温差供冷/供热。该面板的特征是单位面积的热通量大,足够的冷却能力以及简化的热交换系统。研究结果表明,翅片传热板的热通量占90%。在比较不同结构的悬吊式天花板辐射板时,悬吊式翅片传热板可与相对于其他两种结构的温度较低的制冷剂一起使用,并且具有改善热通量的巨大潜力,可减少安装量室内辐射板的面积。最后,优化了翅片传热板的结构。当散热片的散热片间距为5.2 mm时,散热片的冷却/加热能力比原始间距为1.8 mm的面板提高1.5倍,并且所需的金属材料减少到大约占总数的33%。这些结果为此类空调系统的研究提供了理论和实践参考。

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