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Multi-criteria Analysis of Material Compositions of External Walls

机译:外墙材料组合物的多标准分析

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Intensity of building development increases by growing population and their requirements on living. Buildings belong to the largest energy consumers and greenhouse gases emitters. Current energy strategy of European Union is focused especially on reduction of operational energy of buildings. Although operational energy participates the highest proportion in total energy consumption over whole life cycle of building, it is important to take into account embodied energy. Values of embodied energy and associated emissions grow by improving energy quality of building envelope by using extra components and insulation materials. This paper demonstrates significance of correct selection of materials in order to environmental and energy optimalization of building structures. The designed material compositions of external wall alternatives are evaluated by methodology LCA and also in the view of impact on future energy consumption though thermal-physical parameters. Results of assessments are compared by multi-criteria decision analysis. The optimized alternative achieves very low embodied energy (218 MJ/m~2) and high reduction of embodied CO_2 (-114 kg CO_2 eq/m~2).
机译:建筑发展强度随着人口增长及其对生活的要求而增加。建筑属于最大的能源消费者和温室气体发射器。欧洲联盟的现行能源战略专注于减少建筑物的运营能源。虽然运营能源在建筑物的整个生命周期中的总生命周期中的总能耗中的比例最高,但重要的是考虑到体现的能量。通过使用额外的部件和绝缘材料来提高建筑物包络的能量质量,体现能量和相关排放的值。本文展示了正确选择材料的重要性,以便对建筑物结构的环境和能量的高度化。通过方法LCA评估外墙替代方案的设计材料组成,并且在对未来能量消耗的影响之外的热物理参数的影响。通过多标准决策分析比较评估结果。优化的替代方案实现了非常低的实施能量(218MJ / m〜2),并且体现了CO_2的高减少(-114kg co_2 eq / m〜2)。

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