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Experimental investigation of the thermal performances of an extensive green roof in the Mediterranean area

机译:地中海地区广阔的绿色屋顶热性能的实验研究

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Nowadays green roofs are a well-consolidated technology used in several countries since these systems can be employed both to generate considerable energy savings and to improve the thermal performances of buildings. This paper deals with an experimental analysis of an extensive green roof, installed on a building of the University of Calabria (Italy, Lat. 39.3 degrees N). The thermal performances of different layering solutions are analysed under typical Mediterranean climate conditions with reference to a traditional roof system. The analysis showed that the green roof is able to reduce the temperature at the interface with the structural roof, on average, by 12 degrees C with respect to a black bituminous roof in summer and to maintain, on average, a value that is 4 degrees C higher in winter. The measured temperatures allowed to calculate the transferred heat through the building roof, showing negative heat fluxes for the whole period and a reduction of the thermal energy entering the indoor environment of 100% in summer, proving the passive cooling effect of the green roof, and a reduction between 30% and 37% of the thermal energy exiting the indoor environment in winter. The experimental data have been employed also to conduct a dynamic characterization of the different vegetated solutions, showing that the different green roofs solutions are able to generate values of decrement factor varying between 0.135 and 0.193 and a time lag between 3.1 h and 4.8 h, which can substantially improve the dynamic properties of traditional roof structures, especially in the case of roofs with limited dynamic performances. (C) 2016 Elsevier B.V. All rights reserved.
机译:如今,绿色屋顶是在多个国家/地区使用的牢固整合的技术,因为这些系统既可以用于节省大量能源,又可以改善建筑物的热性能。本文对安装在卡拉布里亚大学(意大利,北纬39.3度)的建筑物上的宽广的绿色屋顶进行了实验分析。参照传统的屋顶系统,分析了典型地中海气候条件下不同分层解决方案的热性能。分析表明,与夏季的黑色沥青屋顶相比,绿色屋顶能够将与结构屋顶的接触面的温度平均降低12摄氏度,并且平均保持在4摄氏度左右。 C在冬季较高。测得的温度可以计算通过建筑物屋顶传递的热量,显示整个期间的负热通量,夏季进入室内环境的热能减少100%,证明了绿色屋顶的被动冷却效果,以及在冬天,从室内释放的热能减少了30%至37%。还利用实验数据对不同的植被解决方案进行了动态表征,表明不同的绿色屋顶解决方案能够生成递减系数值,范围介于0.135和0.193之间,以及时滞介于3.1 h和4.8 h之间,可以大大改善传统屋顶结构的动力特性,尤其是在动力性能有限的屋顶情况下。 (C)2016 Elsevier B.V.保留所有权利。

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