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Selecting HVAC Systems to Achieve Comfortable and Cost-effective Residential Net-Zero Energy Buildings

机译:选择HVAC系统以实现舒适且经济高效的住宅净零能耗建筑

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摘要

HVAC is responsible for the largest share of energy use in residential buildings and plays an important role in broader implementation of net-zero energy building (NZEB). This study investigated the energy, comfort and economic performance of commercially-available HVAC technologies for a residential NZEB. An experimentally-validated model was used to evaluate ventilation, dehumidification, and heat pump options for the NZEB in the mixed-humid climate zone. Ventilation options were compared to mechanical ventilation without recovery; a heat recovery ventilator (HRV) and energy recovery ventilator (ERV) respectively reduced the HVAC energy by 13.5 % and 17.4 % and reduced the building energy by 7.5 % and 9.7 %. There was no significant difference in thermal comfort between the ventilation options. Dehumidification options were compared to an air-source heat pump (ASHP) with a separate dehumidifier; the ASHP with dedicated dehumidification reduced the HVAC energy by 7.3 % and the building energy by 3.9 %. The ASHP-only option (without dedicated dehumidification) reduced the initial investment but provided the worst comfort due to high humidity levels. Finally, ground-source heat pump (GSHP) alternatives were compared to the ASHP; the GSHP with two and three boreholes reduced the HVAC energy by 26.0 % and 29.2 % and the building energy by 13.1 % and 14.7 %. The economics of each HVAC configuration was analyzed using installation cost data and two electricity price structures. The GSHPs with the ERV and dedicated dehumidification provided the highest energy savings and good comfort, but were the most expensive. The ASHP with dedicated dehumidification and the ERV (or HRV) provided reasonable payback periods.
机译:暖通空调是住宅建筑能耗中的最大份额,在零净能耗建筑(NZEB)的广泛实施中起着重要作用。这项研究调查了住宅NZEB的商用HVAC技术的能源,舒适度和经济性能。实验验证的模型用于评估混合湿润气候区NZEB的通风,除湿和热泵选项。将通气选项与无恢复的机械通气进行了比较;热回收通风机(HRV)和能量回收通风机(ERV)分别将HVAC能耗降低了13.5%和17.4%,并将建筑能耗降低了7.5%和9.7%。通风选项之间的热舒适性没有显着差异。将除湿选项与带有独立除湿器的空气源热泵(ASHP)进行了比较;具有专用除湿功能的ASHP减少了7.3%的HVAC能耗和3.9%的建筑能耗。仅采用ASHP的选件(无需专用除湿)减少了最初的投资,但由于湿度高而使舒适性最差。最后,将地源热泵(GSHP)的替代方案与ASHP进行了比较。具有两个和三个钻孔的GSHP降低了HVAC能量26.0%和29.2%,以及建筑能量分别降低了13.1%和14.7%。使用安装成本数据和两个电价结构分析了每种HVAC配置的经济性。具有ERV和专用除湿功能的GSHP提供最高的节能效果和良好的舒适性,但价格却最昂贵。具有专用除湿功能的ASHP和ERV(或HRV)提供了合理的投资回收期。

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