大型自然通风办公楼控制策略的设计与试验

G. C. da Graça, P. Linden, P. Haves
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引用次数: 39

摘要

旧金山新联邦大楼的设计包括一座自然通风的办公大楼。每一层都设计成通过建筑管理系统控制的上层窗户进行交叉通风。用户可以控制较低层的窗口,这些窗口可以占总可打开面积的50%。建筑的迎风面和背风面在性能和控制上存在显著差异,对每一面都确定了单独的监控策略。建筑的性能和控制是使用改进版本的EnergyPlus进行设计和测试的。利用EnergyPlus和计算流体动力学的研究结果来设计控制策略。风驱动的交叉通风通过建筑的上部开口产生一个主要的射流,从迎风面穿过天花板到背风面。在这个喷流下面,被占领的区域受到再循环气流的影响。结果表明,如果采用适当的控制策略,在炎热的天气期间使用夜间制冷,预计建筑物内的温度将令人满意。控制策略有10种开窗模式。EnergyPlus被扩展到模拟这些模式的影响,并评估不同形式的用户行为的影响。结果表明,用户行为如何显著影响建筑性能。
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Design and testing of a control strategy for a large, naturally ventilated office building
The design for the new Federal Building for San Francisco includes an office tower that is to be naturally ventilated. Each floor is designed to be cross-ventilated, through upper windows that are controlled by the building management system. Users have control over lower level windows, which can be as much as 50% of the total openable area. There are significant differences in the performance and the control of the windward and leeward sides of the building, and separate monitoring and control strategies are determined for each side. The performance and control of the building has been designed and tested using a modified version of EnergyPlus. Results from studies with EnergyPlus and computational fluid dynamics are used in designing the control strategy. Wind-driven cross-ventilation produces a main jet through the upper openings of the building, across the ceiling from the windward to the leeward side. Below this jet, the occupied regions are subject to a recirculating airflow. Results show that temperatures within the building are predicted to be satisfactory, provided a suitable control strategy is implemented that uses night cooling in periods of hot weather. The control strategy has 10 window opening modes. EnergyPlus was extended to simulate the effects of these modes, and to assess the effects of different forms of user behaviour. The results show how user behaviour can significantly influence the building performance.
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