An Experimental Evaluation of the Thermal Performance of Felt Type Vegetated Facade System

E. Yüksel, Nil Türkeri
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Abstract

. Vegetated facade systems (VFS) have been used as green building envelope systems in recent years. Using VFS for ecological strategies and evaluating thermal performance of these sytems are not a new concept. However, there is not any experimental study in literature which evaluates thermal performance of felt type VFS applied on an insulated existing building wall which is located in Csa climate during cooling and heating periods. Hence, an experimental study was conducted to measure thermal performance of felt type (type which used felt material as growing media) VFS in Kocaeli (under Csa climate). Test results indicate that in day time with high amount of solar radiation, felt type VFS decreased exterior surface temperatures of an insulated existing wall by maximum of 30°C. Also, interior surface temperatures of vegetated facade were lower than interior surface temperatures of reference facade with the maxiumum difference of 1.8 °C. Although high differences between exterior surface temperatures of vegetated and reference walls were observed, there was no significant difference between interior surface temperatures of vegetated and reference walls. This is due to the fact that existing building exterior wall assembly includes 5 cm thickness expanded thermal insulation material which enchance thermal performance of brick wall. In addition, indoor air temperatures behind both facades were close to each other, and were not suitable according to ISO 7730 and ASHRAE 55 Standards comfort range for representative summer days with high ambient air temperatures. Nevertheless, indoor air temperatures behind vegetated facade were in the comfort range in the fall representative day which required cooling, while indoor air temperatures behind reference facade were not in the comfort range in summer representative day.
毡式植被立面系统热工性能的实验评价
. 近年来,植物立面系统(VFS)作为绿色建筑围护结构系统得到了广泛的应用。将VFS用于生态策略和评估这些系统的热性能并不是一个新概念。然而,文献中没有任何实验研究评估毛毡型VFS在Csa气候条件下冷却和加热期间应用于隔热既有建筑墙体的热性能。因此,在Kocaeli (Csa气候条件下)进行了毛毡型(以毛毡材料为生长介质的类型)VFS热性能的试验研究。试验结果表明,在太阳辐射量较大的白天,毡式VFS可使既有保温墙体的外表面温度最大降低30℃。植被立面的内表面温度低于参考立面的内表面温度,最大差值为1.8℃。虽然植被墙和参考墙的外表面温度差异很大,但植物墙和参考墙的内表面温度差异不显著。这是由于现有的建筑外墙组件包括5厘米厚的膨胀隔热材料,提高了砖墙的热工性能。此外,两个立面后面的室内空气温度彼此接近,根据ISO 7730和ASHRAE 55标准的舒适范围,不适合具有高环境温度的典型夏季。然而,植物立面后的室内温度在秋季代表日处于舒适范围内,需要降温,而参考立面后的室内温度在夏季代表日不在舒适范围内。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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