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Modeling, Monitoring, and Validating Green Roof and Green Facade Solutions with Semantic City Models Using Low Cost Sensors and Open Software Infrastructures

机译:使用低成本传感器和开放软件基础架构的语义城市模型建模,监测和验证绿色屋顶和绿色门面解决方案

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摘要

The usage of greenery systems as nature-based solutions to assist in urban cooling in summer time as well as urban warming in wintertime is considered a scientific validated approach in urban planning. The objective of this research is the investigation and quantification of the role of green roofs and green facade solutions concerning thermal behavior in buildings energy savings by using standardized semantic city models that allow the quantification of such measures on district and city scales. The implemented model uses standardized geospatial data based on the CityGML format, a semantic city model standard, for analysis and data storage. For storage of the thermal properties of the buildings, the behavior of its occupants as well as the sensor measurements the Energy ADE of the CityGML standard was used. A green roof/façades model was implemented to simulate the heat transfer in a building based on the heat balance principle of foliage, soil, and structural layers. This model allows analyzing the thermal influence of plant and substrate layers on the heat gains from incoming solar radiation into buildings and the heat losses. This implementation was validated for cooling solutions using monitoring data from real-time experiments during summer measurements at three locations in Germany. Results from this experiment correspond well with the findings of other relevant studies. A sensitivity analysis was conducted to test the impacts of climate, substrate and plants on the greenery layer performance.
机译:将绿化系统用作基于自然的解决方案,以协助夏季时间的城市冷却以及冬季的城市变暖被认为是城市规划中的科学认证方法。本研究的目的是通过使用标准化的语义城市模型来调查和定量建筑物节能中的热行为的作用,这些模型允许在地区和城市规模上量化这些措施。实现的模型使用基于CityGML格式的标准化地理空间数据,是用于分析和数据存储的语义城市模型标准。为了储存建筑物的热特性,使用其乘员的行为以及传感器测量城市哥斯兰标准的能量ADE。实施了绿色屋顶/立面模型,以模拟基于叶子,土壤和结构层的热平衡原理的建筑物中的传热。该模型允许分析植物和衬底层对从进入太阳辐射到建筑物和热损失的热量增益的热影响。使用在德国三个地点的夏季测量期间,使用监测数据验证了这种实施,用于使用监测数据从夏季测量期间的实时实验。该实验的结果与其他相关研究的结果相处得很好。进行了灵敏度分析,以测试气候,基材和植物对绿化层性能的影响。

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