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Methodology of the cost-optimality for improving the indoor thermal environment during the warm season. Presentation of the method and application to a new multi-storey building in Berlin

机译:改善暖季室内热环境的成本最优化方法。向柏林一座新的多层建筑介绍该方法和应用

摘要

The issue of the summer indoor overheating in modern buildings is investigated. Indeed, mainly for heating dominated climates, usually there is a great attention to the design of measures for reducing the energy losses in winter, while the summer comfort often is secondary or neglected. On the other hand, just where the warm season is not so hard, passive energy measures have to be deeply exploited, in order to avoid the installation of air-conditioning systems, with positive effects on both the building and city scales (e.g., the reduction of urban heat islands). After a general overview of the overheating phenomenon, a case report is proposed, where, even if the summer ambient conditions are not extreme, thermal discomfort has been registered during the first years of operations. The office building, recently built in Berlin, fulfils the German requirements of energy efficiency and heat protection in summer. It is not equipped with mechanical systems for the space cooling. According to the new international approach of the cost-optimality, this study investigates strategies for improving the indoor conditions – evaluated by means of the adaptive criteria – during the cooling season, by analyzing various solutions for reducing the heat gains. By means of calibrated numerical models, validated by comparisons with measurements of indoor air temperatures (free-running building), transient energy simulations have been performed. The target of investigation is the research of the optimal solution of solar shadings (i.e., typology and management), in order to find the best compromise in terms of thermally comfortable hours, use of artificial lighting, operational and investment costs.
机译:研究了现代建筑中夏季室内过热的问题。的确,主要是在以供暖为主的气候中,通常要特别注意减少冬天能量损失的措施的设计,而夏天的舒适性往往是次要的或被忽视的。另一方面,在温暖季节不太困难的地方,必须深入利用被动能源措施,以避免安装空调系统,这对建筑和城市规模均产生积极影响(例如,减少城市热岛)。在对过热现象进行了总体概述之后,提出了一个案例报告,其中,即使夏季环境条件不是很极端,在运行的最初几年中仍会出现热不适感。最近在柏林建造的办公大楼可满足德国夏季对能源效率和热防护的要求。它没有配备用于空间冷却的机械系统。根据成本优化的新国际方法,本研究通过分析各种减少热量获取的解决方案,研究了在制冷季节改善室内条件的策略(通过适应性标准进行了评估)。通过校准的数值模型,并通过与室内空气温度(自由运行的建筑物)的测量结果进行比较来验证这一点,已进行了瞬态能量模拟。研究的目标是研究遮阳帘的最佳解决方案(即类型和管理),以便在热舒适时间,使用人工照明,运营和投资成本方面找到最佳折衷方案。

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