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Demand-controlled ventilation in new residential buildings : consequences on indoor air quality and energy savings

机译:新住宅建筑中按需控制的通风:对室内空气质量和节能的影响

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摘要

The consequences on indoor air quality (IAQ) and potential of energy savings when using a variable airvolume (VAV) ventilation system were studied in a newly built Swedish building. Computer simulationswith IDA Indoor Climate and Energy 4 (ICE) and analytical models were used to study the IAQ andenergy savings when switching the ventilation flow from 0.375 ls1m2 to 0.100 ls1m2 duringunoccupancy. To investigate whether decreasing the ventilation rate to 0.1 ls1m2 during unoccupancy,based on Swedish building regulations, BBR, is acceptable and how long the reduction can lastfor an acceptable IAQ, four strategies with different VAV durations were proposed. This study revealedthat decreasing the flow rate to 0.1 ls1m2 for more than 4 h in an unoccupied newly built buildingcreates unacceptable IAQ in terms of volatile organic compounds concentration. Hence, if the durationof unoccupancy in the building is more than 4 h, it is recommended to increase the ventilation rate from0.100 ls1m2 to 0.375 ls1m2 before the home is occupied. The study showed that when the investigatedbuilding was vacant for 10 h during weekdays, increasing the ventilation rate 2 h before occupantsarrive home (low ventilation rate for 8 h) creates acceptable IAQ conditions. In this system, theheating requirements for ventilation air and electricity consumption for the ventilation fan weredecreased by 20% and 30%, respectively.
机译:在新建的瑞典建筑中研究了使用可变风量(VAV)通风系统对室内空气质量(IAQ)的影响和节能潜力。在闲置期间将通风流量从0.375 ls1m2切换到0.100 ls1m2时,使用具有IDA室内气候和能源4(ICE)的计算机模拟和分析模型来研究IAQ和节能。为了研究根据瑞典建筑法规BBR,在无人居住期间将通风速率降低至0.1 ls1m2是否可接受,以及降低的持续时间可以维持可接受的IAQ,提出了四种具有不同VAV持续时间的策略。这项研究表明,在一栋空置的新建建筑中,将流量降低至0.1 ls1m2的时间超过4小时,就挥发性有机化合物的浓度而言,会产生令人无法接受的IAQ。因此,如果建筑物中的闲置时间超过4小时,建议在住所之前将通风速率从0.100 ls1m2增加到0.375 ls1m2。研究表明,当被调查的建筑物在工作日空置10小时时,在居住者回家之前2小时增加通风速率(低通风8小时)会创建可接受的IAQ条件。在该系统中,通风空气的加热需求和通风机的电力消耗分别降低了20%和30%。

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