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Influence of dust accumulation on building roof thermal performance and radiant heat gain in hot-dry climates

机译:干热气候下粉尘堆积对建筑物屋顶热性能和辐射热吸收的影响

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This paper presents an effort to estimate the impact of dust accumulation on exterior building roof absorptivity and total radiative heat gain. A new model is introduced to calculate a building solar absorptivity as a function of dust accumulation rate. Hourly dust deposition is modeled using the Non-hydrostatic Multi-scale Model (NMMB) to predict monthly averaged dust accumulation over time. The correlation sensitivities to its input parameters and the impact of dust accumulation on building annual loads are also studied. Results show that dust accumulation increases the roof solar absorptivity from its initial value up to dust absorptivity based on the site climatic condition and roof characteristics. The predicted monthly averaged accumulated dust for all studied sites varies between 1.3 and 73.8 g/m(2)/month. The new model has resulted in an annual cooling space increase of 44.7-181.1 kWh/m(2)/year, for the selected hot-dry sites with moderate to extreme dust storm conditions. Heating reductions were found to be 0.5-13.1 kWh/m(2)/year which are not significant in comparison to the increase in annual cooling load. The results of this work were attempted to improve the predictive capability of current building simulation models. (C) 2015 Elsevier B.V. All rights reserved.
机译:本文提出了一项工作,以估算灰尘堆积对外部建筑物屋顶吸收率和总辐射热增益的影响。引入了一种新模型来计算建筑物吸光度与灰尘累积率的关系。使用非静力学多尺度模型(NMMB)对每小时的粉尘沉积进行建模,以预测一段时间内每月的平均粉尘积累量。还研究了其输入参数的相关敏感性以及粉尘积累对建筑物年负荷的影响。结果表明,基于现场气候条件和屋顶特性,灰尘的积累使屋顶的太阳吸收率从其初始值增加到灰尘吸收率。所有研究地点的预计平均月平均积尘量在1.3至73.8 g / m(2)/月之间。对于选定的中度至极端沙尘暴条件的热干场所,新模型导致每年的冷却空间增加44.7-181.1 kWh / m(2)/年。发现热量减少为0.5-13.1 kWh / m(2)/年,与年度冷却负荷的增加相比并不显着。这项工作的结果试图提高当前建筑物模拟模型的预测能力。 (C)2015 Elsevier B.V.保留所有权利。

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