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Detailed energy efficiency strategies for converting an existing office building to NZEB: a case study in the Pacific Northwest

机译:将现有办公楼转换为NEZEB的详细能源效率策略:以太平洋西北地区为例

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This paper is an attempt to identify a methodology for converting conventional energy consumption buildings to net-zero energy buildings (NZEB). The first step was rather different from the usual energy audit, which is to analyze a facility's energy consumptions from both macro- and micro-scales. To implement such an approach, a governmental office building (Metro) in Portland, OR, was chosen as a case study. After a building model was validated against a real measurement, it was then used to evaluate different energy efficiency strategies (EESs) so as to reduce the energy consumption. The EESs showed a reduction in energy use intensity (EUI) from 166 to 66 kWh/m~2.year, which is 60% less than the current consumption. The remaining energy demand of the building will be compensated by implementing renewable energy technologies (RETs), namely photovoltaic. The photovoltaic (PV) panels showed viability since they will produce 532 MWh on-site throughout the year, which is sufficient for the future remaining energy demand of the building (490.5 MWh). In conclusion, the simple payback period (SPP) and the life cycle cost analysis proved the feasibility of EESs and RETs. Environmentally, a total of 106 tons of CO_2 was prevented per year; in addition, 64.6 tons of CO_2 will also be avoided by the PVs on a yearly basis.
机译:本文试图识别将传统能耗建筑转换为Net-零能量建筑(NEZEB)的方法。第一步与通常的能量审计相比不同,这是分析来自宏观和微观尺度的设施的能量消耗。为了实施这种方法,选中波特兰的政府办公楼(地铁),或者被选为案例研究。在验证建筑模型以防止实际测量后,然后使用它来评估不同的能效策略(EESS),以降低能耗。 EESS显示能量使用强度(EUI)的减少,从166到66千瓦时/ m〜2.Year,比目前的消耗低60%。建筑物的剩余能源需求将通过实施可再生能源技术(RET),即光伏来补偿。光伏(PV)面板显示活力,因为它们将在全年生产532兆瓦,这足以使建筑物的未来能源需求(490.5兆瓦)。总之,简单的投资回收期(SPP)和生命周期成本分析证明了EESS和RET的可行性。环境上,每年预防总共106吨CO_2;此外,PVS每年也将避免64.6吨CO_2。

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