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An approach to urban quarter design using building generative design and thermal performance optimization

机译:建筑工艺设计和热性能优化的城市四分之一设计方法

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Buildings thermal performance is influenced by the urban context, such as adjacent buildings shadows, block wind paths, or solar radiation reflection. For this reason, in this paper, an automated procedure is used to generate and optimize buildings' thermal performance in a closed O-shape urban quarter with ten building blocks to determine the importance of including the surroundings in estimating the buildings' thermal behavior. The overall shape of the urban quarter is pre-designed, being mainly residential, with several stores in the ground floor and limited to three levels. Each building will have four alternative designs created using a hybrid evolutionary strategy technique that generates building's floor plans according to practitioner's preferences and requirements. Then, a sequential variable optimization procedure coupled with dynamic simulation engine is used to explore the improvement potential of each solution by changing and adding several building elements. The final quarter design is determined by combining the best of all buildings' solutions from thermal performance criteria. The results demonstrate the influence of urban context in the resulting building's thermal performance. Despite the building's shape is similar in the four solutions, these have significant thermal behavior difference due to their interior organization and position in the urban quarter. A comparison analysis is carried out between all building block designs. The buildings, which have exterior walls with openings facing south, have almost half degree-hours of thermal discomfort due to the combination of large openings and shading overhangs. It is also possible to conclude that generative tools, enhanced with optimization procedures, may help practitioners in designing more energy efficient buildings.
机译:建筑物热性能受到城市背景的影响,例如相邻的建筑物阴影,阻挡风路径或太阳辐射反射。因此,在本文中,自动化程序用于通过十个构建块在封闭的O形城市区中产生和优化建筑物的热性能,以确定在估计建筑物的热行为时包括周围环境的重要性。城市季度的整体形状是预先设计的,主要是住宅,地板上有几家商店,并限制为三个层面。每个建筑都有四种替代设计,采用混合进化策略技术创建,根据从业者的偏好和要求,产生建筑物的地板计划。然后,使用动态仿真引擎耦合的顺序可变优化过程,用于通过改变和添加多个构建元件来探索每个解决方案的改进潜力。最后的季度设计是通过从热性能标准中结合所有建筑物的解决方案来确定的。结果展示了城市环境在由此产生的建筑物的热性能中的影响。尽管建筑的形状在四种解决方案中类似,但由于其内部组织和城市季度的位置,这些具有显着的热行为差异。在所有构建块设计之间进行比较分析。由于大开口和遮阳悬垂的组合,设有面向南方的外墙的建筑物,具有近半度的热不适。还可以得出结论,生成工具,增强了优化程序,可以帮助从业者设计更多节能建筑。

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