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Dynamic heat transfer model and applicability evaluation of aerogel glazing system in various climates of China

机译:中国气候条件下气凝胶玻璃窗系统动态传热模型及适用性评估

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摘要

Aerogel is a super insulation material and it has absorptivity to solar radiation. Indoor heat gain through aerogel glazing system and its temperature distribution depend strongly on the climatic conditions and geographical position of a building. In this paper, a dynamic heat transfer model and an optical model for granular aerogel glazing system are developed and validated through an experiment. By employing the validated model, the applicability of aerogel glazing system in various climates has been evaluated. By comparing the total heat loss in heating season, it is found that aerogel glazing system has great energy saving potential in Severe Cold Region and Temperate Region. The comparative analysis of total heat gain in cooling season indicates that aerogel glazing system in Hot-Summer Warm-Winter Region performs slightly better than the commonest double glazing system, but inferior to low-e double glazing system. In Cold Region and Hot-Summer Cold-Winter Region, there both have heating and cooling seasons all year round. The sum of total heat loss and total heat gain is used to evaluate the annual applicability. The results show that aerogel glazing system is suitable to apply in Cold Region and in the south and north orientations of Hot-Summer Cold-Winter Region. (C) 2018 Elsevier Ltd. All rights reserved.
机译:气凝胶是一种超级隔热材料,对太阳辐射具有吸收性。通过气凝胶玻璃窗系统获得的室内热量及其温度分布在很大程度上取决于建筑物的气候条件和地理位置。本文建立了颗粒状气凝胶玻璃系统的动态传热模型和光学模型,并通过实验进行了验证。通过使用经过验证的模型,已经评估了气凝胶玻璃窗系统在各种气候下的适用性。通过比较采暖季节的总热量损失,发现气凝胶玻璃系统在重寒地区和温带地区具有巨大的节能潜力。冷却季节总热量获取的比较分析表明,夏热冬暖地区的气凝胶玻璃窗系统比最常见的双层玻璃窗系统性能稍好,但不如低辐射双层玻璃窗系统。在寒冷地区和夏热冬冷地区,全年都有供暖和制冷季节。总热量损失和总热量获取的总和用于评估年度适用性。结果表明,气凝胶玻璃窗系统适用于寒冷地区以及炎热夏季寒冬地区的南北方向。 (C)2018 Elsevier Ltd.保留所有权利。

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