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A holistic framework to utilize natural ventilation to optimize energy performance of residential high-rise buildings

机译:利用自然通风来优化高层住宅建筑能源性能的整体框架

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摘要

A novel holistic framework was established using Building Information Modelling (BIM) to estimate accurately the potential of natural ventilation of residential high-rise buildings. This framework integrates Computational Fluid Dynamics (CFD) simulation, multi-zone-air-flow modelling, and Building Energy Simulation (BES) to calculate ventilation rates under the mechanisms of wind-, buoyancy- and wind and buoyancy-driven ventilation. The framework was applied to a 40-storey residential building in Hong Kong for estimating the potential of natural ventilation in residential high-rise buildings. The results show that the building can save up to 25% of the electricity consumption if the building employs wind-driven natural ventilation instead of mechanical ventilation. The electricity consumption can be further reduced up to 45% by facilitating the buoyancy-driven natural ventilation. However, natural ventilation is found to be effective only if the temperature difference between indoor and outdoor is less than 2 degrees C. The study suggests to orienting residential high-rise buildings at an oblique angle with the prevalent wind direction than positioning perpendicular to the prevalent wind direction. Furthermore, the framework recommends promoting the wind- driven natural ventilation at top floors of residential high-rise buildings and to facilitate wind and buoyancy- driven natural ventilation at middle and lower floors of the buildings.
机译:使用建筑信息模型(BIM)建立了一个新颖的整体框架,以准确估算住宅高层建筑的自然通风潜力。该框架集成了计算流体动力学(CFD)模拟,多区域气流建模和建筑能耗模拟(BES),以在风,浮力,风和浮力驱动的通风机制下计算通风率。该框架已应用于香港一栋40层的住宅建筑中,以估算住宅高层建筑中自然通风的潜力。结果表明,如果建筑物采用风能自然通风代替机械通风,则可以节省多达25%的电力消耗。通过促进浮力驱动的自然通风,可进一步将电力消耗降低多达45%。但是,只有在室内和室外的温度差小于2摄氏度时,才能发现自然通风才是有效的。研究表明,将住宅高层建筑的方向与风向倾斜,而不是垂直于风向。风向。此外,框架建议在住宅高层建筑的顶层促进风能自然通风,并在建筑物的中层和低层促进风能和浮力驱动的自然通风。

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