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Implications of passive energy efficiency measures on life cycle greenhouse gas emissions of high-rise residential building envelopes

机译:无源能效措施对高层住宅包络生命周期温室气体排放的影响

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The building industry has been developing measures for reducing operational emissions in the fight against climate change. Some of these well-intentioned measures may result in higher embodied emis-sions, potentially more than offsetting reductions achieved during operation. This research evaluates the effectiveness of different levels of application of five passive energy efficiency measures to reduce life cycle greenhouse gas (GHG) emissions in high-rise residential buildings in Toronto, Canada, while consid-ering projected future climate and GHG intensity of energy sources. Through combining and automating life cycle assessment and energy simulation on a visual programing interface, the study evaluates 16,128 envelope variants, examining 56 wall, 12 roof, 6 window assemblies and 4 window-to-wall ratios (WWRs). Decreasing the WWR is found to be the most effective measure to reduce total envelope related GHG emissions (by about 28%). Increasing wall and roof insulation with GHG intensive materials (e.g., extruded polystyrene [XPS]), and increasing spandrel wall insulation potentially augment total emis-sions, depending on the scenario. Higher trade-offs between embodied and operational emissions are found when highly efficient electric HVAC systems are implemented (e.g., heat pumps). Results demon-strate it is imperative to assess both embodied and operational emissions during the design process of building envelopes to effectively reduce GHG emissions. (c) 2021 Published by Elsevier B.V.
机译:建筑业一直在制定减少对抗气候变化的运营排放的措施。这些良好的措施中的一些可能导致更高的体现Emis-SIONS,可能超过在运营期间实现的减少。本研究评估了五种被动能源效率措施的不同应用程度的有效性,以减少加拿大多伦多高层住宅建筑中的生命周期温室气体(GHG)排放,同时考虑预计未来的环境和温室气体的能源。 。通过组合和自动化生命周期评估和能量仿真在视觉上编程界面中,研究评估了16,128个包络体变体,检查了56个墙壁,12个屋顶,6个窗口组件和4个窗口到墙壁比(WWRS)。发现WWR被发现是减少总包络相关的温室气体排放量的最有效措施(约28%)。增加墙壁和屋顶绝缘材料(例如,挤出的聚苯乙烯[XPS]),并增加氨纶壁绝缘潜在的EMIS-SION,具体取决于场景。当实施高效的电气HVAC系统(例如,热泵)时,发现所体现和操作排放之间的更高权衡。结果恶魔策略必须在建设信封的设计过程中评估体现和运营排放,以有效减少温室气体排放。 (c)2021由elsevier b.v发布。

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