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Thermal performance of double skin facade with built-in pipes utilizing evaporative cooling water in cooling season

机译:冷却季节内采用蒸发冷却水的内置管道的双层外墙的热性能

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摘要

As an advanced envelope, the double skin facade (DSF) is popular due to its distinguished aesthetic and thermal performance. However, the temperatures of the air cavity and shading device of a DSF are both high in the daytime in summer. A system of embedding cooling pipes into the venetian blinds of DSFs to reduce the heat gain in summer is proposed in this study. Cooling water is circulated in the pipes to take away the radiant heat directly, and the cool water is provided by a natural cooling source. A comprehensive numerical model is presented to simulate the dynamic heat transfer in the DSF in a complete cooling season, and the model has been validated by experimental data. The performance of the pipe-embedded DSF is investigated regarding different ventilation and operation strategies. Cooling water is produced from a cooling tower as it is one of the most convenient ways to utilize natural cooling in buildings. The heat transfer process of the novel DSF is analyzed and compared with the traditional DSF. And influencing factors such as climate and orientation are evaluated. The results show that the pipe-embedded DSF is very effective in dealing with solar radiation, and thus it is suitable for operation in the daytime and in sunny positions. The cavity of the DSF should be closed because the air temperature in the cavity is even less than the ambient air temperature. The effectiveness of the pipe-embedded DSF is more than 20% in all the selected typical cities in China. In particular, the effectiveness is as high as 80% in Urumchi, due to its large solar radiation and efficient evaporative cooling. Thus the presented novel DSF is energy efficient, and may be promising to popularize in most regions. (C) 2016 Elsevier Ltd. All rights reserved.
机译:作为一种先进的信封,双层玻璃幕墙(DSF)由于其杰出的美学和热性能而广受欢迎。但是,DSF的空气腔和遮光装置的温度在夏季白天都很高。这项研究提出了一种将冷却管嵌入DSF的百叶窗以减少夏季热量获取的系统。冷却水在管道中循环以直接带走辐射热,而冷却水则由自然冷却源提供。提出了一个综合的数值模型来模拟整个冷却季节中DSF中的动态传热,并且该模型已通过实验数据验证。针对不同的通风和运行策略研究了管道嵌入式DSF的性能。冷却水是由冷却塔产生的,因为冷却水是利用建筑物中自然冷却的最便捷方法之一。分析了新型DSF的传热过程并将其与传统DSF进行了比较。并评估了气候和方位等影响因素。结果表明,管道嵌入式DSF在处理太阳辐射方面非常有效,因此适用于白天和晴天的操作。 DSF的腔应封闭,因为腔中的空气温度甚至低于环境空气温度。在中国所有选定的典型城市中,管道嵌入式DSF的有效性均超过20%。尤其是,由于乌鲁木齐的大太阳辐射和有效的蒸发冷却,其效率高达80%。因此,提出的新颖的DSF是节能的,并且可能有望在大多数地区普及。 (C)2016 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Solar Energy》 |2016年第11期|55-65|共11页
  • 作者

    Shen Chong; Li Xianting;

  • 作者单位

    Tsinghua Univ, Dept Bldg Sci, Beijing Key Lab Indoor Air Qual Evaluat & Control, Beijing, Peoples R China;

    Tsinghua Univ, Dept Bldg Sci, Beijing Key Lab Indoor Air Qual Evaluat & Control, Beijing, Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Double skin facade; Energy conservation; Solar radiation; Evaporative cooling;

    机译:双层表皮;节能;太阳能辐射;蒸发冷却;

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