Highlights<'/> An exploration of the relationship between improvements in energy efficiency and life-cycle energy and carbon emissions using the BIRDS low-energy residential database
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An exploration of the relationship between improvements in energy efficiency and life-cycle energy and carbon emissions using the BIRDS low-energy residential database

机译:使用BIRDS低能耗住宅数据库探索提高能效和生命周期能源与碳排放之间的关系

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HighlightsLargest reductions in net operational energy and carbon are captured by solar PV.Solar PV installation also brings about the greatest increases in embodied flows.Reduced operating flows come at the expense of increases in embodied flows.Increases in building energy efficiency correspond with increased embodied flows.AbstractTo conduct a more complete analysis of low-energy and net-zero energy buildings that considers both the operating and embodied energy/emissions, members of the building community look to life-cycle assessment (LCA) methods This paper examines differences in the relative impacts of cost-optimal energy efficiency measure combinations depicting residential buildings up to and beyond net-zero energy consumption on operating and embodied flows using data from the Building Industry Reporting and design for Sustainability (BIRDS) Low-Energy Residential Database. Results indicate that net-zero performance leads to a large increase in embodied flows (over 40%) that offsets some of the reductions in operational flows, but overall life-cycle flows are still reduced by over 60% relative to the state energy code. Overall, building designs beyond net-zero performance can partially offset embodied flows with negative operational flows by replacing traditional electricity generation with solar production, but would require an additional 8.34 kW (18.54 kW in total) of due south facing solar PV to reach net-zero total life-cycle flows. Such a system would meet over 239% of operational consumption of the most energy efficient design considered in this study and over 116% of a state code-compliant building design in its initial year of operation.
机译: 突出显示 太阳能光伏发电可以最大程度地减少净运营能源和碳。 太阳能PV安装也带来了最大的体现流量。 精简操作流量以体现流量的增加为代价。 提高建筑物的能效即时性与增加的体现流量相对应。 < ce:abstract xmlns:ce =“ http://www.elsevier.com/xml/common/dtd” xmlns =“ http://www.elsevier.com/xml/ja/dtd” id =“ abs0010” view = “ all” class =“ author”> 摘要 为对低能耗和零净能耗建筑进行更完整的分析,同时考虑了运行中的能源和内含的能源/排放,建筑界的成员希望生活在以下方面:周期评估(LCA)方法本文使用建筑行业报告和可持续性设计数据,研究了成本-最佳能效措施组合相对影响的差异,这些组合描述了达到和超过净零能耗的住宅建筑对运营和体现流量的影响。 (BIRDS)低能耗住宅数据库。结果表明,零净性能导致体现流量大幅增加(超过40%),抵消了部分运营流量的减少,但相对于国家能源法规,整个生命周期流量仍减少了60%以上。总体而言,超过零净性能的建筑设计可以通过用太阳能发电代替传统的发电来部分抵消负流量的体现流量,但需要额外增加8.34 kW(总计18.54 kW)的朝南太阳能PV才能达到净-总生命周期流量为零。这样的系统在其开始运营的第一年中,将满足该研究中考虑的最节能设计的239%以上的运营消耗,以及116%的符合国家法规的建筑设计。

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