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The Energy Upgrading of Existing Buildings: Window and Shading Device Typologies for Energy Efficiency Refurbishment

机译:现有建筑物的能源升级:窗户和遮阳设备类型,以进行能源效率翻新

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Residential buildings built after the Second World War have high energy consumption and inadequate thermal comfort, especially in summer conditions, largely attributable to the high transmittance of windows and lack of effective shading devices. Performance improvement of these components is essential for energy upgrading of existing buildings. This paper shows the results of the research, which aims to evaluate effects on energy consumption and environmental comfort of combined solutions of windows and shading devices applied to a case study representing a typical post World War II Italian building. In this paper, the main typologies of solar control systems are described and evaluated on the basis of a case study in different climatic locations (Berlin, Milan, Florence and Athens). Thermal behavior has been assessed through the EnergyPlus dynamic calculation code, by using appropriate performance indicators for energy and thermal sensation. Starting from performance evaluation of the existing building, different strategies have been assessed: replacement of existing windows with high-energy performance ones and introduction of shading devices and solar control glasses. Finally, a global comparative analysis has been carried out based on energy, acoustic and lighting performances, technical feasibility and management problems. Results of the different solar shading devices assessment are reported in the form of a data sheet.
机译:第二次世界大战后建造的住宅建筑物能耗高且热舒适性不足,尤其是在夏季条件下,这在很大程度上归因于窗户的透光率高和缺乏有效的遮阳装置。这些组件的性能改进对于现有建筑物的能源升级至关重要。本文显示了研究结果,该研究旨在评估窗户和遮阳装置组合解决方案对能源消耗和环境舒适性的影响,该解决方案应用于代表典型的第二次世界大战后意大利建筑的案例研究。在本文中,以不同气候地区(柏林,米兰,佛罗伦萨和雅典)的案例研究为基础,描述和评估了太阳能控制系统的主要类型。热能行为已通过EnergyPlus动态计算代码进行评估,使用了适用于能量和热感的适当性能指标。从对现有建筑物的性能评估开始,已评估了不同的策略:用高能效的窗户替换现有的窗户,并引入遮阳设备和太阳能控制玻璃。最后,根据能源,声学和照明性能,技术可行性和管理问题进行了全球比较分析。不同的遮阳设备评估结果以数据表的形式报告。

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