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Combining life cycle costing and life cycle assessment for an analysis of a new residential district energy system design

机译:将生命周期成本与生命周期评估相结合,以分析新的居住区能源系统设计

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摘要

Due to the growing threat of climate change, we are challenged to find improved assessment practises to recognize solutions for sustainable urban development. The focus of the study is on the life cycle design of a district energy system for a new residential development in Finland. This study analyses LCC (life cycle costs) and carbon emissions (LCA (life cycle assessment)), i.e., the "viability" of different energy systems through a methodological life cycle framework. By combining LCC and LCA, a LCM (life cycle management) perspective is portrayed to support decision-making on a long-term basis. The comparable energy design options analysed are (1) district heating (reference design), (2) district heating with building integrated photovoltaic panels, (3) ground source heat pump, and (4) ground source heat pump with building-integrated photovoltaic panels. The results show that the design option with the highest initial investment (4) is in fact the most viable from a life cycle perspective. This study fuerther strengthens the connection between cost savings and carbon emissions reduction in a life cycle context. Thus, by implementing LCC and LCA analysis in an early design phase, justified economic and environmental design decisions can be identified to develop more sustainable urban areas.
机译:由于气候变化的威胁越来越大,我们面临着寻找更好的评估方法以识别可持续城市发展解决方案的挑战。该研究的重点是针对芬兰新住宅开发的区域能源系统的生命周期设计。这项研究通过方法生命周期框架分析了LCC(生命周期成本)和碳排放量(LCA(生命周期评估)),即不同能源系统的“生存能力”。通过将LCC和LCA结合起来,可以描绘出LCM(生命周期管理)观点,以长期支持决策。分析的可比能源设计方案包括(1)区域供热(参考设计),(2)带有建筑集成光伏面板的区域供热,(3)地源热泵和(4)带有建筑集成光伏面板的地源热泵。结果表明,从生命周期的角度来看,初始投资最高的设计方案(4)实际上是最可行的。这项研究进一步加强了在生命周期中节省成本和减少碳排放之间的联系。因此,通过在早期设计阶段实施LCC和LCA分析,可以确定合理的经济和环境设计决策,以开发更具可持续性的城市地区。

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