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首页> 外文期刊>Buildings >The Implications of Climate Zones on the Cost-Optimal Level and Cost-Effectiveness of Building Envelope Energy Renovation and Space Heat Demand Reduction
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The Implications of Climate Zones on the Cost-Optimal Level and Cost-Effectiveness of Building Envelope Energy Renovation and Space Heat Demand Reduction

机译:气候带对建筑围护结构能量改造和空间供热需求降低的成本最优水平和成本效益的影响

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The cost-optimal level of energy performance for buildings shall be identified according to the European directive of 2010. The Swedish building stock needs comprehensive knowledge and an overall strategy for the cost-optimal level of renovation. This paper studies the contribution of Swedish climate zones to the cost-optimal level of renovation on a multi-story residential building in Sweden from the building owner perspective. The building space heat demand is simulated for four Swedish climate zones. The net present profit (NPP) method is defined and used in this study in order to analyze the cost-optimal level and the cost-effective renovation of building envelope components (e.g., attic floor, basement walls, exterior walls and windows). The implication of different discount rates is studied, as well. The results show that the optimum renovation of the building envelope offers 51% more energy savings for space heating when the building is in a northern climate zone compared to a southern zone. The study suggests that different renovation strategies for the building stock renovation need to be identified, separately, for each climate zone. The NPP analysis identifies the minimum required investment and maximum achievable energy savings that are needed to have a cost-effective renovation. The broad range of studied climate zones provides the opportunity to apply the obtained results to other climate zones by either interpolation or extrapolation of NPPs for the buildings with similar characteristics.
机译:应根据2010年欧洲指令确定建筑物的能源最佳成本水平。瑞典建筑存量需要全面的知识和整体战略,以进行成本最佳的翻新工程。本文从建筑物拥有者的角度研究了瑞典气候区对瑞典多层住宅建筑的成本优化水平的贡献。模拟了四个瑞典气候区的建筑空间热需求。本研究中定义并使用了净现利润(NPP)方法,以分析建筑围护结构部件(例如阁楼地板,地下室壁,外墙和窗户)的成本最优水平和成本效益翻新。还研究了不同折现率的含义。结果表明,与南部地区相比,当建筑物位于北部气候区时,对建筑物围护结构的最佳翻新可为空间供暖节省51%的能源。研究表明,需要针对每个气候区分别确定不同的建筑库存翻新策略。 NPP分析确定了具有成本效益的装修所需的最低投资要求和最大可实现的节能量。通过对具有相似特征的建筑物的NPP进行内插或外推,广泛研究的气候带提供了将获得的结果应用于其他气候带的机会。

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