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Simulation of facade and envelope design options for a new institutional building

机译:模拟新机构大楼的立面和围护结构设计选项

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This paper presents a simulation case study of facade and envelope preliminary design options for the new Engineering building of Concordia University in Montreal. A major principle of the analysis was to create a high quality building envelope in order to optimally control solar gains, reduce heating and cooling energy demand and reduce electricity consumption for lighting, while at the same time maintain a comfortable and pleasant indoor environment. The stated approach of the design team was to aim for an energy-efficient building, employing innovative technologies and integrating concepts such as daylighting and natural ventilation. Detailed energy simulations were therefore performed from the early design stage, in order to present recommendations on the choice of facade, glazings, shading devices, lighting control options, and natural ventilation. Integrated thermal studies, a daylighting analysis and the impact of the above on HVAC system sizing were considered. Simulation results showed that, using an optimum combination of glazings, shading devices and controllable electric lighting systems, the energy savings in perimeter spaces can be substantial. Perimeter heating could be eliminated if a high performance envelope is used. The building is currently being commissioned.
机译:本文介绍了蒙特利尔康考迪亚大学新工程大楼立面和围护结构初步设计方案的模拟案例研究。分析的主要原则是创建一个高质量的建筑围护结构,以便最佳地控制太阳能获取,减少供暖和制冷能源需求并减少照明用电量,同时保持舒适宜人的室内环境。设计团队的既定方法旨在采用创新技术并结合日光和自然通风等概念,打造节能建筑。因此,从设计初期就进行了详细的能源模拟,以提出有关立面,玻璃,遮光设备,照明控制选项和自然通风的选择建议。考虑了综合热力研究,采光分析以及以上因素对HVAC系统尺寸的影响。仿真结果表明,通过将玻璃,遮光装置和可控电照明系统进行最佳组合,可以在周边空间节省大量能源。如果使用高性能外壳,则可以消除周边加热。该建筑目前正在调试中。

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