Modelling thermal and humidity transfers within green roof systems: effect of rubber crumbs and volcanic gravel

IF 2.1 Q2 CONSTRUCTION & BUILDING TECHNOLOGY Advances in Building Energy Research Pub Date : 2020-12-11 DOI:10.1080/17512549.2020.1858961
M. Kazemi, L. Courard
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引用次数: 15

Abstract

ABSTRACT The use of recycled materials and porous aggregates such as rubber crumbs and volcanic gravel (pozzolana) for the drainage layer can lead to improving thermal behaviour of the green roofs. On the other hand, the thermal performances of green roofs can be affected by the thickness of substrate and drainage layer. Therefore, the main objective of this study was to adapt modelling characteristics for different thicknesses of substrate and drainage layers used under constant and variable temperatures and solar radiation: specific rubber crumbs and volcanic gravel behaviour has been modelled. The simultaneous heat and moisture transfers within the green roof were estimated as well. According to the results, the 9 cm substrate was recommended to be used for the green roofs, once the thickness of drainage layer was 4 cm. Moreover, the optimum thickness of pozzolana and rubber crumbs as drainage layer was 6 and 7 cm, respectively, once the thickness of the substrate was kept constant (5 cm). By increasing the thickness of substrate and drainage layers, the fluctuation of internal ceiling temperature in the green roof models with the presence of humidity decreased, but not as much as that in the green roof models without the presence of humidity.
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模拟绿色屋顶系统内的热和湿度转移:橡胶屑和火山砾石的影响
摘要排水层使用再生材料和多孔骨料,如橡胶屑和火山砾石(火山灰),可以改善绿色屋顶的热性能。另一方面,基层和排水层的厚度会影响绿色屋顶的热性能。因此,本研究的主要目的是适应在恒定和可变温度以及太阳辐射下使用的不同厚度的基底和排水层的建模特性:已经对特定的橡胶屑和火山砾石行为进行了建模。对绿色屋顶内同时发生的热量和水分传递也进行了估算。根据结果 当排水层厚度为4时,建议绿色屋顶使用cm基质 此外,火山灰和橡胶屑作为排水层的最佳厚度分别为6和7 一旦基板的厚度保持恒定(5 cm)。通过增加基底层和排水层的厚度,在有湿度的情况下,绿色屋顶模型中的内部天花板温度波动减小,但没有没有没有湿度的绿色屋顶模型那么大。
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来源期刊
Advances in Building Energy Research
Advances in Building Energy Research CONSTRUCTION & BUILDING TECHNOLOGY-
CiteScore
4.80
自引率
5.00%
发文量
11
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