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Experimental Investigation of Convective Heat Transfer during Night Cooling with Different Ventilation Systems and Surface Emissivities

机译:不同通风系统和表面发射率夜间冷却过程中对流换热的实验研究

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摘要

Night-time ventilation is a promising approach to reduce the energy needed for cooling buildings without reducing thermal comfort. Nevertheless actual building simulation tools have showed their limits in predicting accurately the efficiency of night-time ventilation, mainly due to inappropriate models for convection. In a full-scale test room, the heat transfer was investigated during 12 h of discharge by night-time ventilation. A total of 34 experiments have been performed, with different ventilation types (mixing and displacement), air change rates, temperature differences between the inlet air and the room, and floor emissivities. This extensive experimental study enabled a detailed analysis of the convective and radiative flow at the different surfaces of the room. The experimentally derived convective heat transfer coefficients (CHTC) have been compared to existing correlations. For mixing ventilation, existing correlations did not predict accurately the convective heat transfer at the ceiling due to differences in the experimental conditions. But the use of local parameters of the air flow showed interesting results to obtain more adaptive CHTC correlations. For displacement ventilation, the convective heat transfer was well predicted by existing correlations. Nevertheless the change of floor emissivity influenced the CHTC at the surface of interest.
机译:夜间通风是一种有希望的方法,可在不降低热舒适性的情况下减少建筑物制冷所需的能量。然而,实际的建筑模拟工具在准确预测夜间通风效率方面已显示出其局限性,这主要是由于对流模型不合适。在大型测试室中,通过夜间通风在排放12小时期间研究了热传递。总共进行了34次实验,其中使用了不同的通风类型(混合和排量),换气率,进气和房间之间的温差以及地板的发射率。这项广泛的实验研究可以对房间不同表面的对流和辐射流进行详细分析。实验得出的对流换热系数(CHTC)已与现有的相关性进行了比较。对于混合通风,由于实验条件的差异,现有的相关性无法准确预测天花板上的对流传热。但是使用气流的局部参数显示出有趣的结果,以获得更多的自适应CHTC相关性。对于置换通风,对流传热可以通过现有的相关性很好地预测。但是,地板发射率的变化会影响目标表面的CHTC。

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