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Diurnal and partitioned heat-flux patterns of coupled green-building roof systems

机译:耦合的绿色建筑屋顶系统的日间和分区热通量模式

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Coupled green-building roof system can assess bidirectional heat-flux with indoor space. Two high-rise residential blocks in humid-subtropical Hong Kong, with and without roof building thermal insulation (BTI), were monitored for thermal performance across seasons and weather conditions. Each block had three plots: Sedum and herbaceous Peanut green roofs, plus bare Control. Diurnal heat-flux data were partitioned into daytime and nighttime, and positive and negative fractions. On hot summer-sunny day, Control without BTI facilitates notable daytime influx and nighttime efflux of heat. Sedum augments thermal-mass effect pushing more heat indoor than Control. With balance between transpirationcooling and heat-sink formation, Peanut registers intermediate heat gain. Adding BTI raises heat-gain and eliminates Control heat-loss, curtails Sedum heat-gain, and maintains Peanut heat-gain. BTI partnering with green roof offer synergistic thermal benefit by increasing thermal mass, thermal capacity and thermal resistance to furnish thermal buffering, thermal lag, and extending heat ingress to nighttime. Lower solar-radiation input on summer-cloudy day significantly trims heat gain at Control, with limited reduction at both green roofs. Summer-rainy day brings further drop in heat gain. For cloudy and rainy scenarios, heat-gain suppression is more notable with BTI. Interpretations for other season-weather conditions and implications of the findings are elaborated. (C) 2015 Elsevier Ltd. All rights reserved.
机译:耦合的绿色建筑屋顶系统可以评估室内空间的双向热通量。在潮湿和亚热带的香港,有和没有屋顶建筑隔热材料(BTI)的两个高层住宅街区,在整个季节和天气条件下均进行了热性能监测。每个街区都有3个地块:景天和草本的花生绿色屋顶,再加上裸露的对照。昼夜热通量数据分为白天和晚上,以及正负两个部分。在炎热的夏季-晴天,不使用BTI进行控制会促进白天的大量涌入和夜间的热量散发。景天增强了热质效应,将室内热量推向了比Control高的位置。通过在蒸腾冷却和散热片形成之间取得平衡,花生获得了中等的热量吸收。添加BTI可以增加热量获取,消除控制热量损失,减少景天热量获取,并保持花生热量获取。 BTI与绿色屋顶的合作通过增加热质量,热容量和热阻来提供协同的热效益,以提供热缓冲,热滞后,并将热输入扩展到夜间。在夏季阴天,较低的太阳辐射输入会显着降低Control的热量吸收,两个绿色屋顶的热量减少量有限。夏季多雨的日子使热量吸收进一步下降。对于阴天和多雨的情况,使用BTI抑制热增益更为明显。详细阐述了其他季节天气条件的解释及其发现的含义。 (C)2015 Elsevier Ltd.保留所有权利。

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