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An experimental and numerical model of a desiccant facade. A case of study of an office building in different weather conditions

机译:干燥剂门面的实验性和数值模型。不同天气条件下办公楼的案例

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Meeting thermal comfort in buildings with high latent loads requires the treatment of the air humidity with specific technologies. Desiccant based systems have proved to be effective in removing ventilation latent load in heating-ventilation and air conditioning systems. Typically, desiccant based systems are part of the air-handling units, which control both temperature and humidity. Based on the above, this paper presents an innovative solution designed to be integrated in the building envelope. It consists of a honeycomb desiccant block placed inside a ventilated facade. The regeneration of the desiccant material is carried out by a solar air collector, which is also integrated in the facade. The aim of the system is to dehumidify the ventilation air before entering the air-handling unit using the facade as an active element of the system. The solution is built at a pilot scale and tested under Mediterranean climate conditions. The experimental tests lead to a numerical model implemented in TRNSYS. This model is used to evaluate the performance of the solution in an office building comparing with a conventional cooling coil system, the conventional alternative. Results show that, under Mediterranean climate, the desiccant facade ensures a humidity comfort greater than 92% in neutral supply air conditions (26 degrees C and 50%). Under the same neutral conditions, conventional systems can only achieve this level of comfort by supplying colder air in order to force the condensation of the air in the cooling coil, which entails an energy consumption increase of 29%. Last, results confirm that the desiccant facade leads to lower energy consumption in both Mediterranean and Subtropical climates while conventional systems are more appropriate in cold semi-arid climates. (c) 2020 Elsevier B.V. All rights reserved.
机译:具有高潜在载荷的建筑物中的热舒适性需要处理具有特定技术的空气湿度。已证明基于干燥剂的系统可有效地去除加热通风和空调系统中的通风潜荷。通常,基于干燥剂的系统是空气处理单元的一部分,其控制温度和湿度。基于以上,本文介绍了一种旨在集成在建筑信封中的创新解决方案。它由蜂窝干燥剂块组成,放置在通风门面内。干燥剂材料的再生由太阳能空气收集器进行,该太阳能集电器也集成在外观中。该系统的目的是在使用门面作为系统的有源元件进入空气处理单元之前,在进入空气处理单元之前进行除湿空气。该解决方案以试点规模构建并在地中海气候条件下进行测试。实验测试导致Trnsys实施的数值模型。该模型用于评估与传统的冷却线圈系统的办公楼中的解决方案的性能,传统的替代方案。结果表明,在地中海气候下,干燥剂立面确保了中性供应空气条件(26℃和50%)的湿度舒适度大于92%。在相同的中性条件下,传统系统只能通过供应较冷的空气来实现这种舒适度,以迫使冷却盘管中的空气冷凝,这需要增加29%的能量消耗。最后,结果证实干燥剂门面导致地中海和亚热带气候中的能耗降低,而传统系统在冷半干旱气候中更适合。 (c)2020 Elsevier B.v.保留所有权利。

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