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The role of wall layers properties on the thermal performance of ventilated facades: Experimental investigation on narrow-cavity design

机译:壁层特性对通风外墙热性能的作用:窄腔设计的实验研究

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In this paper we have investigated how different materials and thermal masses impact on the performance of ventilated facades with narrow cavities, by measuring the variation in terms of heat flows and ventilation efficiency. While geometry has been widely explored, the role of wall composition has received much less attention. To bridge the gap, three real-scale prototypes of ventilated facades were built and tested all over the year on a mock-up in Central Italy: (i) L, with a lightweight external enclosure, as a baseline reference, (ii) IM, with a massive layer enclosed in the gap and (iii) EM, with an external massive cladding. The results demonstrated that the EM solution more effectively mitigated the average surface temperatures (both external and internal), with values of -2 degrees C and -1 degrees C in summer and of -3 degrees C and -0.5 degrees C in winter, when compared to the L solution. Moreover, in the EM case, the ventilated cavity reduced both the incoming and outgoing heat fluxes, since the outer mass operated as a thermal buffer between the outdoor and the ventilation chamber. Conversely, the presence of an internal mass determined an increase of the heat transfer towards the indoor environment. The position of the thermal mass in the outer layer also increased the air velocity in the gap thus enhancing the stack effect. (C) 2019 Elsevier B.V. All rights reserved.
机译:本文通过测量热流和通风效率方面的变化,研究了如何对具有窄腔的通风外墙性能的影响。虽然几何是广泛探索的,但墙壁组成的作用受到了更少的关注。为了弥合差距,在意大利中部的模拟中,在一年内建造并测试了三个通风外墙的真正型号:(i)L,具有轻量级外壳,作为基线参考,(ii)IM ,具有围绕间隙和(iii)em的大量层,外部覆盖物。结果表明,EM解决方案更有效地减轻了平均表面温度(外部和内部),夏季和-3摄氏度和-3摄氏度和-0.5摄氏度的值与L溶液相比。此外,在EM壳体中,通风腔减少了进入和输出热通量,因为外部块作为室外和通风室之间的热缓冲器操作。相反,内部质量的存在确定了向室内环境的热传递的增加。外层的热质量的位置也增加了间隙中的空气速度,从而增强了堆叠效果。 (c)2019 Elsevier B.v.保留所有权利。

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