Department of Civil Engineering, Aalborg University, DK-9000 Aalborg, Denmark.
Indoor Air. 2010 Apr;20(2):126-40. doi: 10.1111/j.1600-0668.2009.00630.x. Epub 2009 Sep 30.
The need to improve the energy efficiency of buildings requires new and more efficient ventilation systems. It has been demonstrated that innovative operating concepts that make use of natural ventilation seem to be more appreciated by occupants. Among the available ventilation strategies that are currently available, buoyancy driven, single-sided natural ventilation has proved to be very effective and can provide high air change rates for temperature and Indoor Air Quality (IAQ) control. However, to promote a wider distribution of these systems an improvement in the knowledge of their working principles is necessary. The present study analyses and presents the results of an experimental evaluation of airing performance in terms of ventilation characteristics, IAQ and thermal comfort. It includes investigations of the consequences of opening time, opening frequency, opening area and expected airflow rate, ventilation efficiency, thermal comfort and dynamic temperature conditions. A suitable laboratory test rig was developed to perform extensive experimental analyses of the phenomenon under controlled and repeatable conditions. The results showed that short-term window airing is very effective and can provide both acceptable IAQ and thermal comfort conditions in buildings. Practical Implications This study gives the necessary background and in-depth knowledge of the performance of window airing by single-sided natural ventilation necessary for the development of control strategies for window airing (length of opening period and opening frequency) for optimum IAQ and thermal comfort in naturally ventilated buildings.
提高建筑物能源效率的需求需要新的、更高效的通风系统。已经证明,利用自然通风的创新运行理念似乎更受居住者的欢迎。在目前可用的各种通风策略中,浮力驱动的单侧自然通风已被证明非常有效,可以为温度和室内空气质量 (IAQ) 控制提供高的空气交换率。然而,为了推广这些系统的更广泛应用,需要提高对其工作原理的认识。本研究分析并呈现了通风特性、IAQ 和热舒适方面的通风性能实验评估的结果。它包括对开窗时间、开窗频率、开窗面积和预期气流速率、通风效率、热舒适和动态温度条件的影响的研究。开发了一个合适的实验室测试台,以在受控和可重复的条件下对该现象进行广泛的实验分析。结果表明,短期窗户通风非常有效,可以在建筑物中提供可接受的 IAQ 和热舒适条件。实际意义本研究为单侧自然通风的窗户通风性能提供了必要的背景和深入的知识,这对于开发窗户通风(开窗时间和开窗频率)的控制策略是必要的,以实现自然通风建筑中的最佳 IAQ 和热舒适。