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Energy saving potentials of demand-controlled ventilation based on real-time traffic load in underground parking facilities

机译:基于地下停车设施实时交通负荷的需求控制通风的节能潜力

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The main topic of this paper is to show a possibility of indoor air quality enhancement and the fan energy savings in underground parking facilities by applying the demand-controlled ventilation (DCV) strategy based on the real-time variation of the traffic load. The established ventilation rate is estimated by considering the passing distance, CO emission rate, idling time of a vehicle, and the floor area of the parking facility. However, they are hard to be integrated into the real-time DCV control. As a solution to this problem, the minimum ventilation rate per a single vehicle is derived in this research based on the actual ventilation data acquired from several existing underground parking facilities. And then its applicability to the DCV based on the real-time variation of the traffic load is verified by simulating the real-time carbon monoxide concentration variation. The energy saving potentials of the proposed DCV strategy is also checked by comparing it with those for the current underground parking facility ventilation systems found in the open literature.
机译:本文的主题是通过应用基于交通负荷的实时变化的需求控制的通风(DCV)策略,展示室内空气质量增强和风扇节能的可能性。通过考虑距离,共同排放率,空转时间,以及停车设施的地板区域来估计建立的通风率。但是,它们很难集成到实时DCV控制中。作为解决这个问题的解决方案,基于从几个现有地下停车设施获取的实际通风数据来源的本研究中,每辆车的最小通风速率。然后通过模拟实时一氧化碳浓度变化来验证基于交通负荷的实时变化的DCV的适用性。还通过将其与开放文献中发现的当前地下停车设施通风系统进行比较来检查所提出的DCV策略的节能潜力。

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