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Regionalized LCA-Based Optimization of Building Energy Supply: Method and Case Study for a Swiss Municipality

机译:基于区域生命周期评估的建筑能源供应优化:瑞士市政厅的方法和案例研究

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摘要

This paper presents a regionalized LCA-based multi-objective optimization model of building energy demand and supply for the case of a Swiss municipality for the minimization of greenhouse gas emissions and particulate matter formation. The results show that the environmental improvement potential is very large: in the optimal case, greenhouse gas emissions from energy supply could be reduced by more than 75% and particulate emissions by over 50% in the municipality. This scenario supposes a drastic shift of heat supply systems from a fossil fuel dominated portfolio to a portfolio consisting of mainly heat pump and wood-chip incineration systems. In addition to a change in heat supply technologies, roofs, windows and walls would need to be refurbished in more than 65% of the municipality's buildings. The full potential of the environmental impact reductions will hardly be achieved in reality, particularly in the short term, for example, because of financial constraints and social acceptance, which were not taken into account in this study. Nevertheless, the results of the optimization model can help policy makers to identify the most effective measures for improvement at the decision making level, for example, at the building level for refurbishment and selection of heating systems or at the municipal level for designing district heating networks. Therefore, this work represents a starting point for designing effective incentives to reduce the environmental impact of buildings. While the results of the optimization model are specific to the municipality studied, the model could readily be adapted to other regions.
机译:本文针对瑞士市政当局提出的基于LCA的区域化建筑能源需求和供应的多目标优化模型,以最大程度地减少温室气体排放和颗粒物的形成。结果表明,改善环境的潜力非常大:在最佳情况下,该市的能源供应温室气体排放量可减少75%以上,微粒排放量可减少50%以上。这种情况假设供热系统从以化石燃料为主的投资组合急剧转变为主要由热泵和木屑焚化系统组成的投资组合。除了改变供热技术外,还需要对全市65%以上的建筑物中的屋顶,窗户和墙壁进行翻新。在现实中,尤其是在短期内,几乎不可能实现减少环境影响的全部潜力,例如,由于财务限制和社会认可,在本研究中未将其考虑在内。尽管如此,优化模型的结果仍可以帮助决策者在决策层确定最有效的改进措施,例如在建筑物层进行翻新和选择供热系统,或者在市政层进行设计区域供热管网。 。因此,这项工作是设计有效激励措施以减少建筑物对环境影响的起点。虽然优化模型的结果特定于所研究的市政当局,但该模型可以很容易地适用于其他地区。

著录项

  • 来源
    《Environmental Science & Technology》 |2014年第13期|7651-7659|共9页
  • 作者单位

    Group for Ecological Systems Design, Institute of Environmental Engineering, ETH Zurich, John-von-Neumann-Weg 9, 8093 Zurich, Switzerland;

    Group for Ecological Systems Design, Institute of Environmental Engineering, ETH Zurich, John-von-Neumann-Weg 9, 8093 Zurich, Switzerland;

    Group for Ecological Systems Design, Institute of Environmental Engineering, ETH Zurich, John-von-Neumann-Weg 9, 8093 Zurich, Switzerland;

    Group for Ecological Systems Design, Institute of Environmental Engineering, ETH Zurich, John-von-Neumann-Weg 9, 8093 Zurich, Switzerland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-17 14:00:59

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