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Alternative ventilation strategies in US offices: Comprehensive assessment and sensitivity analysis of energy saving potential

机译:美国办事处的替代通风策略:节能潜力的综合评估和敏感性分析

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Mature technologies exist to reduce the heating, ventilation, and air-conditioning (HVAC) energy associated with ventilation and use ventilation proactively to save energy. This study investigated the energy use impacts in U.S. office buildings of multiple alternative ventilation strategies that combined: economizing, demand controlled ventilation (DCV), supply air temperature reset (SR), and/or a doubled ventilation rate. We used energy simulations in a Monte Carlo analysis, sampling 17 building inputs and varying locations to match the climate zone distribution of the U.S. office stock. Results indicated the possibility for significant savings compared to a baseline that ventilated constantly at a minimum rate in both a small office type with a constant air volume (CAV) HVAC system and a medium office type with a variable air volume (VAV) system. In 95% of instances, HVAC source energy savings were 5-25% in the small-CAV office (median: 11%) and 6-42% in the medium-VAV office (median: 27%). In the small-CAV office, DCV typically saved the most energy, usually from heating, and heating degree days and occupant density were decisive influences. In the medium-VAV office, economizing and SR were most important, DCV usually only had minor impacts, and zone temperature setpoints, along with climate indicators, were the critical influences. Other than infiltration, envelope characteristics did not strongly influence energy impacts. The untapped primary energy savings of alternative ventilation strategies over the 74% of U.S. office floorspace reasonably represented by our modeling was estimated at 36 TWh per year, with an annual value of U.S. $1.25 billion. (C) 2017 Elsevier Ltd.
机译:存在成熟的技术来减少与通风相关的采暖,通风和空调(HVAC)能量,并主动使用通风以节省能源。这项研究调查了多种替代通风策略对美国办公楼的能源使用影响,这些策略组合在一起:节能,需求控制通风(DCV),供气温度重置(SR)和/或双倍通风速率。我们在蒙特卡洛(Monte Carlo)分析中使用了能源模拟,对17个建筑物的输入和不同的位置进行了采样,以匹配美国办公楼的气候区分布。结果表明,与具有恒定风量(CAV)HVAC系统的小型办公室类型和具有可变风量(VAV)系统的中型办公室相比,以最低速率持续通风的基线相比,可以节省大量资金。在95%的情况下,小型CAV办公室的HVAC能源节省为5-25%(中位数:11%),中型VAV的办公室为6-42%(中位数:27%)。在小型CAV办公室中,DCV通常节省最多的能量,通常来自加热,并且加热的天数和乘员密度是决定性的影响。在中型VAV办公室中,节能和SR最为重要,DCV通常只产生较小的影响,而区域温度设定点以及气候指标则是关键影响。除了渗透以外,包膜特性没有强烈影响能量的影响。在我们的模型合理代表的美国办公楼面积的74%范围内,替代通风策略未开发的一次能源节省估计为每年36 TWh,年价值为12.5亿美元。 (C)2017爱思唯尔有限公司

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