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Potential of Urban Densification to Mitigate the Effects of Heat Island in Vienna, Austria

机译:城市密集化有可能缓解奥地利维也纳热岛的影响

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Global increase of urban population has brought about a growing demand for more dwelling space, resulting in various negative impacts, such as accelerated urbanization, urban sprawl and higher carbon footprints. To cope with these growth dynamics, city authorities are urged to consider alternative planning strategies aiming at mitigating the negative implications of urbanization. In this context, the present contribution investigates the potential of urban densification to mitigate the heat island effects and to improve outdoor thermal conditions. Focusing on a quite densely urbanized district in Vienna, Austria, we carried out a set of simulations of urban microclimate for pre- and post-densification scenarios using the parametric modelling environment Rhinoceros 3D and a set of built-in algorithms in the Rhino’s plug-in Grasshopper. The study was conducted for a hot summer period. The results revealed a notable solar shielding effect of newly introduced vertical extensions of existing buildings, promoting temperature decrease and improved thermal conditions within more shaded urban canyons and courtyards. However, a slight warming effect was noted during the night-time due to the higher thermal storage and lower sky view factor.
机译:全球城市人口的增长带来了对更多居住空间的需求不断增长,导致各种负面影响,例如加速的城市化,城市扩张和碳足迹增加。为了应对这些增长动力,敦促城市当局考虑采取其他规划策略,以减轻城市化的负面影响。在此背景下,本文稿调查了城市致密化的潜力,以减轻热岛效应并改善室外热状况。针对奥地利维也纳一个相当密集的城市化地区,我们使用参数化建模环境Rhinoceros 3D和Rhino插件中的一组内置算法,对在致密化前后的城市微气候进行了一系列模拟。在蚱hopper。该研究是在炎热的夏季进行的。结果表明,新引入的现有建筑物的垂直延伸具有显着的遮阳效果,可在更阴暗的城市峡谷和庭院中促进温度下降并改善热状况。然而,由于较高的蓄热和较低的天空视野,在夜间注意到了轻微的变暖效果。

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