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Optimization of thermal and daylight performance of school buildings based on a multi-objective genetic algorithm in the cold climate of China

机译:基于多目标遗传算法的中国寒冷气候下学校建筑的热和日光性能优化

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A high demand for heating energy in winter, overheating in summer and visual discomfort are important issues in school buildings in the cold climate of China. This study presents the use of simulation-optimization tools to find the optimal trade-off between minimizing energy use for heating and lighting, reducing summer discomfort time and maximizing the Useful Daylight Illuminance (UDIavg, between 100 and 2000 lx). Different spatial configurations were investigated, including a single-sided open corridor type, a single-sided enclosed corridor type and a double-sided corridor type school. The following passive design parameters were considered in the optimization analysis: orientation, room depth and corridor depth, window-to -wall ratio of different interfaces, glazing materials and shading types. The results of the optimization study show that the energy demand for heating and lighting can be reduced by 24-28% and summer thermal discomfort by 9-23% while the UDIavg (100-2000 lx) can simultaneously increase by 15-63%. Considering all three aspects, the double-sided enclosed corridor type performs best due to its energy performance while the one-sided enclosed corridor type is the least suitable for the cold Climate because of its relatively poor visual comfort quality. In addition, the passive design parameters should be carefully considered as each spatial configuration has its own optimal passive design parameters. (C)2017 Elsevier B.V. All rights reserved.
机译:在中国寒冷的气候中,冬季对供暖能源的高需求,夏季的过热和视觉不适是学校建筑中的重要问题。这项研究提出了使用仿真优化工具来找到在最小化供暖和照明能耗,减少夏季不适时间和最大化可用日照度(UDIavg,介于100和2000 lx之间)之间的最佳折衷。研究了不同的空间配置,包括单面开放式走廊型,单面封闭式走廊型和双面走廊式学校。在优化分析中考虑了以下无源设计参数:方向,房间深度和走廊深度,不同界面的窗墙比,玻璃材料和遮光类型。优化研究的结果表明,采暖和照明的能源需求可以减少24-28%,夏季热不适感可以减少9-23%,而UDIavg(100-2000 lx)可以同时增加15-63%。考虑到所有三个方面,双面封闭走廊类型的能源性能最佳,而双面封闭走廊类型的视觉舒适度相对较差,因此最不适合寒冷的气候。另外,应该仔细考虑被动设计参数,因为每个空间配置都有自己的最佳被动设计参数。 (C)2017 Elsevier B.V.保留所有权利。

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