建筑部门的低碳发展已成为推进我国低碳经济至关重要的一个组成部分,因此正确客观地评价建筑的低碳水平具有重要的指导意义。本文以2010年上海世博会中国馆为研究对象,采用碳排放情景分析法,针对中国馆的基准建筑与实际建筑,计算其世博...建筑部门的低碳发展已成为推进我国低碳经济至关重要的一个组成部分,因此正确客观地评价建筑的低碳水平具有重要的指导意义。本文以2010年上海世博会中国馆为研究对象,采用碳排放情景分析法,针对中国馆的基准建筑与实际建筑,计算其世博结束后正常运行条件下的碳排放水平,评估中国馆实际建筑的碳减排效益。使用建筑能耗模拟软件DesignBuilder对建筑全年能源消耗水平进行了模拟,并通过相应能源品种的碳排放因子分别计算了实际建筑和基准建筑的碳排放水平;同时应用全生命周期方法(LCA)分析了中国馆实际建筑应用太阳能光伏、LED照明技术相比于基准建筑所带来的减排效益。结果表明:世博结束后正常运行条件下,中国馆实际建筑年碳排放量为18 969 t CO2e,基准建筑年碳排放量为25 770 t CO2e,因此,相比基准建筑,中国馆实际建筑一年减排6 801 t CO2e,年碳减排率为26.4%;减排效益主要由节能设计及绿色技术贡献,分别占96.3%和3.7%。本文通过综合评估中国馆的碳减排效益,以期为我国公共建筑低碳工作的开展进行有益的探索。展开更多
Ventilation is an effective solution for improving indoor air quality and reducing airborne transmission.Buildings need sufficient ventilation to maintain a low infection risk but also need to avoid an excessive venti...Ventilation is an effective solution for improving indoor air quality and reducing airborne transmission.Buildings need sufficient ventilation to maintain a low infection risk but also need to avoid an excessive ventilation rate,which may lead to high energy consumption.The Wells-Riley(WR)model is widely used to predict infection risk and control the ventilation rate.However,few studies compared the non-steady-state(NSS)and steady-state(SS)WR models that are used for ventilation control.To fill in this research gap,this study investigates the effects of the mechanical ventilation control strategies based on NSS/SS WR models on the required ventilation rates to prevent airborne transmission and related energy consumption.The modified NSS/SS WR models were proposed by considering many parameters that were ignored before,such as the initial quantum concentration.Based on the NSS/SS WR models,two new ventilation control strategies were proposed.A real building in Canada is used as the case study.The results indicate that under a high initial quantum concentration(e.g.,0.3 q/m^(3))and no protective measures,SS WR control underestimates the required ventilation rate.The ventilation energy consumption of NSS control is up to 2.5 times as high as that of the SS control.展开更多
文摘建筑部门的低碳发展已成为推进我国低碳经济至关重要的一个组成部分,因此正确客观地评价建筑的低碳水平具有重要的指导意义。本文以2010年上海世博会中国馆为研究对象,采用碳排放情景分析法,针对中国馆的基准建筑与实际建筑,计算其世博结束后正常运行条件下的碳排放水平,评估中国馆实际建筑的碳减排效益。使用建筑能耗模拟软件DesignBuilder对建筑全年能源消耗水平进行了模拟,并通过相应能源品种的碳排放因子分别计算了实际建筑和基准建筑的碳排放水平;同时应用全生命周期方法(LCA)分析了中国馆实际建筑应用太阳能光伏、LED照明技术相比于基准建筑所带来的减排效益。结果表明:世博结束后正常运行条件下,中国馆实际建筑年碳排放量为18 969 t CO2e,基准建筑年碳排放量为25 770 t CO2e,因此,相比基准建筑,中国馆实际建筑一年减排6 801 t CO2e,年碳减排率为26.4%;减排效益主要由节能设计及绿色技术贡献,分别占96.3%和3.7%。本文通过综合评估中国馆的碳减排效益,以期为我国公共建筑低碳工作的开展进行有益的探索。
基金Project(RGPIN-2019-05824)supported by the Start-up Fund of Universitéde Sherbrooke and Discovery Grants of Natural Sciences and Engineering Research Council of Canada(NSERC)。
文摘Ventilation is an effective solution for improving indoor air quality and reducing airborne transmission.Buildings need sufficient ventilation to maintain a low infection risk but also need to avoid an excessive ventilation rate,which may lead to high energy consumption.The Wells-Riley(WR)model is widely used to predict infection risk and control the ventilation rate.However,few studies compared the non-steady-state(NSS)and steady-state(SS)WR models that are used for ventilation control.To fill in this research gap,this study investigates the effects of the mechanical ventilation control strategies based on NSS/SS WR models on the required ventilation rates to prevent airborne transmission and related energy consumption.The modified NSS/SS WR models were proposed by considering many parameters that were ignored before,such as the initial quantum concentration.Based on the NSS/SS WR models,two new ventilation control strategies were proposed.A real building in Canada is used as the case study.The results indicate that under a high initial quantum concentration(e.g.,0.3 q/m^(3))and no protective measures,SS WR control underestimates the required ventilation rate.The ventilation energy consumption of NSS control is up to 2.5 times as high as that of the SS control.