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Dynamic thermal performance of pipe-embedded building envelope utilizing evaporative cooling water in the cooling season

机译:冷却季节利用蒸发冷却水的管道嵌入式建筑围护结构的动态热性能

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摘要

An active pipe-embedded building envelope, which is a kind of external wall with cooling pipes embedded, has been developed recently to reduce heat transfer through building envelopes in summer. However, the method presented in previous studies was not good enough to analyze the thermal performance of this kind of building envelope during the whole cooling season. In this paper, a comprehensive numerical model is employed to simulate the conjugated heat transfer through a pipe-embedded building envelope in the whole summer. The model has been validated by the experimental data and then employed to a case study. The performance of the novel envelope in different orientations in three typical cities in China is analyzed with the cooling water produced from evaporative cooling. The results show that the cooling pipes are effective in the three typical cities in China, especially in Beijing where the reduced heat gain in the cooling season reaches 17.4 kW h per square meter of wall. And the reduction rates of overall electricity consumption are 51.9% and 58.9% in Shanghai and Guangzhou, respectively. The embedded pipes are more suitable for orientations with more sunshine such as the roof and west wall. The study will help develop a comprehensive understanding of the dynamic performance of pipe-embedded envelopes utilizing evaporative cooling. (C) 2016 Elsevier Ltd. All rights reserved.
机译:最近开发了一种有源管道嵌入式建筑围护结构,它是一种嵌入了冷却管的外墙,可减少夏季通过建筑围护结构的热传递。然而,先前研究中提出的方法不足以分析这种建筑围护结构在整个冷却季节的热性能。本文采用一个综合的数值模型来模拟整个夏季通过管道嵌入的建筑围护结构的共轭传热。该模型已通过实验数据验证,然后用于案例研究。通过蒸发冷却产生的冷却水,分析了中国三个典型城市中不同方向的新型信封的性能。结果表明,冷却管在中国的三个典型城市中均有效,尤其是在北京,在冷却季节,每平方米墙面的热量吸收减少了17.4 kWh。上海和广州的总体用电量减少率分别为51.9%和58.9%。嵌入式管道更适合日照较多的方向,例如屋顶和西墙。这项研究将有助于全面了解利用蒸发冷却的管道嵌入式封壳的动态性能。 (C)2016 Elsevier Ltd.保留所有权利。

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