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Optimisation analysis of PCM-enhanced opaque building envelope components for the energy retrofitting of office buildings in Mediterranean climates

机译:PCM增强的不透明建筑围护结构组件对地中海气候中的办公楼能源改造的优化分析

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摘要

The energy retrofitting of existing buildings is of major importance to reach the energy sustainability target set by the European Union (EU) for 2020. Innovative retrofitting solutions can involve the adoption of Phase Change Materials (PCMs), but an effective use of PCM in buildings requires an appropriate selection of the thermophysical properties, quantity and position of the PCMs. To guarantee a good functioning of a PCM and ensure economic feasibility, an optimisation of PCM use is advisable. In the present paper, multi-objective optimisation analyses for the energy retrofitting of office buildings with PCM-enhanced opaque building envelope components are presented. A retrofitting intervention on either the external or internal side of the opaque envelope was considered, and a maximum of two PCM layers with different melting temperatures were selected and placed in different positions within the wall. Two sets of objective functions were minimised; first, primary energy consumption and global costs, and then the building energy needs for heating and cooling and investment costs. The search variables included the thickness and thermo-physical properties of the PCM layers, the window type, the insulation and internal lining materials, the wall configuration and U-value. In order to provide a robust methodology to drive designers towards an informed choice of the final retrofitting strategy, post-optimisation analyses were additionally carried out to investigate the variable values that led to the optimal solutions. Interesting and non-trivial information was obtained. The optimal thermo-physical properties of PCMs were found to be affected in particular by the operation of the HVAC system.
机译:现有建筑物的能源翻新对于实现欧盟(EU)设定的2020年能源可持续性目标至关重要。创新的翻新解决方案可以采用相变材料(PCM),但在建筑物中有效使用PCM需要适当选择PCM的热物理性质,数量和位置。为了保证PCM的良好功能并确保经济可行性,建议对PCM使用进行优化。在本文中,提出了使用PCM增强的不透明建筑围护结构构件对办公楼进行能源改造的多目标优化分析。考虑了对不透明封套的外侧或内侧的改装干预,并且最多选择了两个具有不同熔化温度的PCM层并将其放置在墙内的不同位置。最小化了两组目标函数;首先是一次能源消耗和全球成本,其次是建筑能源的供暖和制冷需求以及投资成本。搜索变量包括PCM层的厚度和热物理性质,窗户类型,隔热材料和内部衬里材料,墙的配置和U值。为了提供一种鲁棒的方法来驱动设计人员明智地选择最终的改装策略,还进行了后优化分析,以研究导致最佳解决方案的变量值。获得了有趣且重要的信息。发现PCM的最佳热物理性质特别受HVAC系统的运行影响。

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