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Experimental and numerical investigation of urban street canyons to evaluate the impact of green roof inside and outside buildings

机译:城市街道峡谷的实验和数值研究,以评估建筑物内部和外部绿色屋顶的影响

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In the present work, an experimental urban canyon (scale 1:10) with 4 cm concrete wall thickness and full scale green roof was used to evaluate the impact of green roof inside and outside the buildings. The platform was equally used to validate a coupled heat and mass transfer model for green roof behavior. The albedo of the green roof was measured and implemented in the numerical model. The developed model has been coupled to a building thermal code (TRNSYS). Then, simulations were conducted for the experimental urban canyon studied where a comparison was undertaken between green and conventional roofing. A reduction of the maximum roof surface temperature by 20 ℃ was found in summer due to the green roof. Green roof protects the roof membrane from high temperature fluctuations increasing the roof longevity and delay the timing of the peak membrane surface temperature by several hours. Also, the presence of vegetation permits to reduce the outside air temperature of the street canyon by 0.8 ℃. Hence, green roofing is an effective solution to reduce the total energy demand and to improve the urban microclimate in the street canyon for an oceanic temperate climate.
机译:在当前的工作中,使用了一个实验性城市峡谷(比例为1:10),混凝土壁厚为4厘米,满刻度为绿色屋顶,用于评估建筑物内部和外部的绿色屋顶的影响。该平台同样用于验证屋顶绿化行为的传热传质耦合模型。测量并在数值模型中实现了绿色屋顶的反照率。开发的模型已与建筑物热力法规(TRNSYS)耦合。然后,对所研究的城市峡谷进行了模拟,对绿色屋顶和传统屋顶进行了比较。由于绿色屋顶,夏季最高屋顶表面温度降低了20℃。绿色屋顶保护屋顶膜免受高温波动的影响,从而增加屋顶寿命,并使膜表面峰值温度的时间延迟数小时。另外,植被的存在使街道峡谷的外界空气温度降低了0.8℃。因此,绿色屋顶是减少总能源需求并改善街道峡谷中城市微气候以应对海洋性温带气候的有效解决方案。

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