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Integrating embodied impact into the context of EPBD recast: An assessment on the cost-optimal levels of nZEBs

机译:将体现的影响集成到EPBD重量的背景下:评估肠炎的成本最佳水平

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摘要

Towards the zero energy and emission future, near Zero Energy Buildings (nZEBs) lead the path for the building construction sector. European legislation provides normative provisions for the definition of nZEBs and their cost-optimal levels within the context of EPBD recast and Delegated Regulation No.244 (2012). However, that same framework unilaterally assesses the building's impact and considers only the emissions from the operational phase. The present study is a first approach of integrating embodied impact into the context of EPBD recast for the cost-optimal levels of nZEBs, an option provided by its accompanying guidelines. The proposed two-step assessment combines the LCA, LCCA and Energy analysis on the Greek nZEB case study. An extended sensitivity analysis regarding climatic, design and monetary parameters, correlates the effect of embodied impact with the transposition of the cost-optimal levels to building variants with lower material intensity. That same transposition highlights an increase in the primary energy of the cost-optimal level between 0.00 kWh/m(2).year and 3.57 kWh/m(2).year and a decrease in the share of embodied to the total life cycle emissions and energy between 0.61% and 2.36% and 0.78% and 2.82%% respectively. The effect fades in the total sensitivity analysis scale, where it is located only within the range of results that follow the current energy efficiency regulations' calculations. Results validate the outcome of a previous companion case study, while both indicate the need for further analysis in order to assess the aspects of nZEBs which are subject of variable definitions across the EU member states. (C) 2020 Elsevier B.V. All rights reserved.
机译:朝向零能量和排放的未来,近零能量建筑(NZEBS)引领建筑施工部门的路径。欧洲立法提供了在EPBD重点和委托规监管第244(2012)范围内的核武器和其成本最佳水平的规范性规定。但是,同样的框架单方面评估了建筑的影响,并仅考虑了业务阶段的排放。本研究是将体现对EPBD的背景集成到EPBD的背景下的第一种方法,以便为核苷酸的成本最佳水平,由其随附的准则提供。建议的两步评估结合了LCA,LCCA和对希腊NZEB案例研究的能量分析。关于气候,设计和货币参数的扩展灵敏度分析,将体现影响与成本最佳水平的转换的影响相关,以建立具有较低材料强度的变体。同样的转子突出显示成本最佳水平的主要能量增加0.00kWh / m(2).year和3.57 kWh / m(2).year和减少的体现为总生命周期排放能量分别为0.61%和2.36%和0.78%和2.82 %%。效果在总灵敏度分析量表中消退,其中它仅在遵循当前能效规定的计算的结果范围内。结果验证了先前伴随案例研究的结果,同时两者都表明需要进一步分析,以评估欧盟成员国跨越欧盟成员国的变量定义的核心的方面。 (c)2020 Elsevier B.v.保留所有权利。

著录项

  • 来源
    《Energy and Buildings》 |2020年第5期|109863.1-109863.20|共20页
  • 作者单位

    Aristotle Univ Thessaloniki Dept Civil Engn Lab Bldg Construct & Bldg Phys Thessaloniki 54124 Greece;

    Aristotle Univ Thessaloniki Dept Civil Engn Lab Bldg Construct & Bldg Phys Thessaloniki 54124 Greece;

    Aristotle Univ Thessaloniki Dept Civil Engn Lab Bldg Construct & Bldg Phys Thessaloniki 54124 Greece;

    Aristotle Univ Thessaloniki Dept Civil Engn Lab Bldg Construct & Bldg Phys Thessaloniki 54124 Greece;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    nZEB; Cost-optimal; Embodied impact; Sensitivity analysis; EPBD recast;

    机译:NZEB;成本最佳;体现了影响;敏感性分析;EPBD重铸;
  • 入库时间 2022-08-18 21:38:17

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