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Solar energy in urban environment: how urban densification affects existing buildings

机译:城市环境中的太阳能:城市致密化如何影响现有建筑物

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The paper is focused on a new solar urban planning approach for building densification and preservation in existing urban areas. Dense urban environments provide a complex settlement, where solar availability and urban daylight can become a scarce commodity, especially since buildings become increasingly taller. This is mainly due to the complex and dynamic overshadowing effects created on the building envelope. Accurately quantifying these effects could be the key to predicting reductions in solar availability which, in turn, can significantly affect daylight and the thermal performance of buildings, as well as the potential for PVs and other renewables sources. It is therefore necessary to use simulation tools in order to predict the mutual complex effects. In accordance with European building regulations, which are going toward a Net Zero Energy City, this paper presents a new design approach using generative modeling tools and dynamic simulation software in order to develop a sustainable urban planning method.
机译:本文专注于建立现有城市地区致密化和保护的新太阳城市规划方法。密集的城市环境提供复杂的解决方案,太阳能可用性和城市日光可能成为稀缺的商品,特别是因为建筑物越来越高。这主要是由于建筑信封上创建的复杂和动态的过性效果。准确定量这些效果可能是预测太阳可用性减少的关键,反过来可以显着影响日光和建筑物的热性能,以及PVS和其他可再生能源的潜力。因此,必须使用仿真工具来预测相互复杂的效果。根据欧洲建筑法规,该法规朝向净零能源城市,本文采用了一种新的设计方法,采用生成建模工具和动态仿真软件,以开发可持续城市规划方法。

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