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首页> 外文期刊>Journal of Cleaner Production >Development of a new spectral selectivity-based passive radiative roof cooling model and its application in hot and humid region
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Development of a new spectral selectivity-based passive radiative roof cooling model and its application in hot and humid region

机译:一种新型光谱选择性基于无源辐射屋顶冷却模型及其在炎热和潮湿区域的应用

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Radiative sky cooling has attracted worldwide attention due to its passive cooling potential with zero energy input. Daytime cooling materials with outstanding spectral properties are developing rapidly. Using these new cooling materials as roof coatings can become one of the most prominent radiative cooling methods integrated with buildings. Current existing models and numerical tools are not able to incorporate the spectral selectivity of radiative cooling materials and local precipitable water vapor, thus failing to accurately predict roof thermal performance. To this end, the paper newly develops a spectral selectivity-based passive radiative roof cooling model to integrate full spectral properties of emerging cooling materials and consider precipitable water vaporinduced atmospheric radiation for precise evaluation of roof cooling performance. A field experiment was carried out to validate the developed model. The mean bias errors (MBEs) of the model in the prediction of rooftop temperatures were found less than 4.6%, verifying the sufficient accuracy of the new model in characterizing roof temperature variations. After validation, the developed model was used to investigate the potential benefits of radiative cooling as a rooftop strategy in the hot and humid region of Hong Kong. The whole year on-site weather data were collected as the model input. Compared to the baseline coating, the reductions in monthly cumulative roof thermal transfer values by applying a porous polymer cooling coating are 18.5-22.3, 33.7-40.5 and 2.9-3.5 kWh/m2 for residential concrete-based, industrial galvanized steel-based, and standard-compliant commercial multilayered roofs, respectively. For the above three roofs, the radiative cooling coating is able to save the annual roof-induced cooling electricity of 54.7-76.6, 97.4-136.4, and 8.8-12.2 kWh/m2, corresponding to the cooling cost saving of 71.8-100.5, 127.8-179.0, 11.5-16.0 HK$/(m2.yr), respectively. The new spectral selectivity-based radiative roof cooling model can be widely employed to accurately evaluate the utilization of daytime radiative coolers as a rooftop strategy in improving building thermal and energy performance.
机译:由于其具有零能量输入的被动冷却电位,辐射天空冷却引起了全世界的关注。具有出色光谱性质的日间冷却材料迅速开发。使用这些新的冷却材料作为屋顶涂层可以成为与建筑物集成的最突出的辐射冷却方法之一。目前现有的模型和数值工具不能掺入辐射冷却材料的光谱选择性和局部可降水水蒸气,因此不能准确地预测屋顶的热性能。为此,本文新开发了一种基于光谱选择性的无源辐射屋顶冷却模型,可集成出新的冷却材料的全光谱性能,并考虑可降水水蒸发的大气辐射,以确切评价屋顶冷却性能。进行了一个现场实验以验证开发模型。在预测屋顶温度下,模型的平均偏差误差(MBES)小于4.6%,验证了新模型在表征屋顶温度变化时的足够精度。验证后,开发的模型用于调查散热冷却作为香港炎热和潮湿地区屋顶策略的潜在好处。全年内部天气数据被收集为模型输入。与基线涂层相比,通过施加多孔聚合物冷却涂层的月度累积屋顶热转印值的减少为18.5-22.3,33.7-40.5和2.9-3.5 kWh / M2,用于住宅混凝土的基于工业镀锌钢铁和基于工业镀锌钢铁,以及分别标准兼容的商业多层屋顶。对于上述三个屋顶,辐射冷却涂层能够节省54.7-76.6,97.4-136.4和8.8-12.2千瓦时/ M2的年度屋顶诱导的冷却电力,对应于71.8-100.5,127.8的冷却成本节省-179.0,分别为11.5-16.0 HK $ /(M2.YR)。新型光谱选择性的辐射屋顶冷却模型可广泛用于精确评估日间辐射冷却器的利用作为提高建筑热能和能量性能的屋顶策略。

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