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Low-energy buildings heat supply-Modelling of energy systems and carbon emissions impacts

机译:低能耗建筑供热-能源系统和碳排放影响的建模

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摘要

Construction of new low-energy buildings (LEB) areas is attracting attention as a climate mitigation measure. Heat can be supplied to buildings in these areas through individual solutions, through a small, on-site heat network, or through a heat connection to a close-by district-heating (DH) system. The choice between these options affects the energy supply systems and their carbon emissions far beyond the LEB area. We compare the long-term systems impacts of the three heat-supply options through dynamic modelling of the energy systems. The study draws on data collected from a real LEB area in Sweden and addresses scale-dependent impacts on district heating systems. The results show that, generally, the individual and on-site options increase biomass and electricity use, respectively. This, in turn, increases carbon emissions in a broader systems perspective. The systems impacts of the large heat network option depend on the scale and supply-technologies of the DH system close to the LEB area.
机译:作为缓解气候变化的措施,新的低能耗建筑(LEB)地区的建设引起了人们的关注。可以通过单独的解决方案,小型的现场热网或通过与附近区域供热(DH)系统的热连接为这些区域的建筑物供热。这些选择之间的选择会影响能源供应系统及其碳排放,其范围远远超出LEB区域。通过能源系统的动态建模,我们比较了三种供热方案对长期系统的影响。这项研究借鉴了从瑞典真实LEB地区收集的数据,并研究了规模对区域供热系统的影响。结果表明,一般而言,个体和现场选择分别增加了生物质和电力消耗。反过来,从更广阔的系统角度来看,这会增加碳排放量。大型热网选项对系统的影响取决于靠近LEB区域的DH系统的规模和供应技术。

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