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Natural ventilation with a supply air window and motorized skylight: a field study

机译:自然通风供应空气窗口和机动天窗:田间研究

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Fenestration systems that allow air to circulate between window panes, also called ventilated or airflow windows, can be a simple and efficient way to provide or remove air in a building. This contribution presents modelled and experimental results from a field study where a triple-glazed supply air window is installed in the bedroom of a small, airtight house. A motorized skylight in the living room completes this natural ventilation system. Simulations of the ventilated cavity following ISO 15099 reveal an effective U-value 12-26% lower and a heat recovery efficiency of 58-38% when under a natural ventilation regime and a constant airflow of 14.4 m3/s. The temperature and CO2 levels in the bedroom and living room and window air outlet velocity were measured during 2 nights of single occupancy and 2 nights of double occupancy. Experimental data reveal a dynamic airflow through the ventilated window where local wind conditions have a large influence on the airflow. Effective average room ventilation flow rate between 27 and 42 m3/s were calculated with the transient mass method. This ventilation system is simple, silent and provided satisfactory indoor air quality in the building.
机译:允许空气在窗玻璃之间循环的更eneStration系统,也称为通风或气流窗口,可以是一种简单而有效的方式,可以在建筑物中提供或移除空气。该贡献提出了一种由一个实地研究的建模和实验结果,其中一个小玻璃供应空气窗口安装在一个小型气密房屋的卧室里。客厅里的机动天窗完成了这种自然通风系统。在ISO 15099之后的通风腔的模拟显示出在自然通风制度下的有效U值12-26%,热回收效率为58-38%,恒定的气流为14.4m 3 / s。期间单个占用2个晚上和2晚双人的测定在卧室和起居室和窗口空气出口速度的温度和CO 2水平。实验数据揭示了通过通风窗口的动态气流,其中局部风力条件对气流有很大影响。用瞬态质量法计算27和42m3 / s之间的有效平均室通气流速。这种通风系统简单,沉默,在建筑物中提供了令人满意的室内空气质量。

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