暖通空调>期刊目次>2015年>第2期

新风对采用被动房技术的居住建筑能耗的影响

Influence of outdoor air on energy consumption of residential buildings with passivhaus technology

章文杰[1],郝斌[2],刘珊[2],程杰[2]
[1]湖南大学,[2]住房和城乡建设部科技发展促进中心

摘要:

被动房技术对建筑围护结构的高要求提升了建筑的保温隔热性能和整体气密性,有效减少了围护结构的热传导和室内外空气渗透引起的冷热量损失,但为了满足室内卫生和舒适要求,需要有组织的通风空调方式,新风的处理和输配能耗突出。根据被动房技术参数要求及国内相关标准建立了对比模型,对北京地区某居住建筑不同新风量时的冷热负荷及通风空调系统能耗进行了模拟计算。结果表明,采取30 m3/(人·h)的最小新风量时,被动房冬季最大负荷为22 W/m2,夏季最大负荷为55 W/m2左右,其中新风负荷分别占63.8%和34.2%;采用排风全热回收装置存在一定的能源效益,使得被动房全年供暖空调能耗为22.66 kW·h/(m2·a),比按照现行北京节能标准设计的居住建筑节能7%左右。

关键词:被动房,居住建筑,新风负荷,能量回收,模拟

Abstract:

The high demand of passivhaus technology for building envelope improves the insulation property and air tightness, which effectively decreases the cold or heat loss caused by thermal conductivity and air infiltration. However, in order to meet the requirement of indoor sanitation and thermal comfort, ventilation and air conditioning are necessary, thus the energy consumption of air handling and distribution is more prominent. Based on the differences between passivhaus standard and domestic relevant design standard for energy efficiency of residential buildings, builds the different models for comparison. Performs simulation and contrastive analysis about cooling and heating load, as well as energy consumption of ventilation and air conditioning systems under different levels of outdoor air in residential buildings in Beijing. The results show that when the minimum outdoor air volume is 30 m3/(person·h), the maximum heat load of passivhaus standard model is 22 W/m2, and the maximum cooling load is about 55 W/ m2, where the outdoor air load can occupy 63.8% and 34.2% in winter and summer, respectively. A certain degree of energy utilization efficiency can be obtained by using mechanical ventilation and energy recovery devices. Then the heating and cooling energy consumption of passivhaus standard model can be 22.66 kW·h/(m2·a), which saves energy by about 7% than the model with Design standard for energy efficiency of residential buildings.

Keywords:passivhaus,residentialbuilding,outdoorairload,energyrecovery,simulation

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