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首页> 外文期刊>Case Studies in Thermal Engineering >Airflow visualization and performance assessment for a roof ridge ventilator under wind using Schlieren photography technique
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Airflow visualization and performance assessment for a roof ridge ventilator under wind using Schlieren photography technique

机译:使用Schlieren摄影技术的风屋顶脊柱呼吸机的气流可视化和性能评估

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摘要

In Taiwan, natural ventilation devices are installed in many high-ceiling buildings, and such devices become a natural smoke vent system when a fire breaks out. The improved ridge ventilators can lead to hot air exclusion while avoiding the effect of wind. Four modes of wind were adopted to carry out the model experiments in this research. Considering that ventilators have complex and curved geometries, the Schlieren photography technique was used to effectively display the flow pattern of hot air. Thermocouples were installed to measure temperatures at each opening. The Schlieren images and temperature values indicate that the heat flowed upwards significantly when the wind was calm. When the traditional ridge ventilator was installed, the wind had an inhibitory effect on the exhaustion of hot air in an internal space. After the improved ridge ventilators were installed, the wind blew like moderate breeze, and the removal effect of hot air was improved. The experimental results indicated that heat accumulation was not obvious. However, the outside air would gush into a building when the intensity of the wind became a strong breeze. The results showed the performance of traditional and improved roof ridge ventilators in different wind fields.
机译:在台湾,自然通风装置安装在许多高天花板建筑中,此类设备在火灾突破时成为天然烟雾系统。改进的脊呼吸机可以导致热空气排除,同时避免风的效果。采用四种风模式进行本研究中的模型实验。考虑到呼吸机具有复杂且弯曲的几何形状,Schlieren摄影技术用于有效地显示热空气的流动模式。安装热电偶以测量每个开口的温度。 Schlieren图像和温度值表明,当风平静时,热量显着流动。当安装传统的脊通风机时,风对内部空间中的热空气的耗尽具有抑制作用。安装了改进的脊呼吸机后,风吹出类似的微风,热空气的去除效果得到改善。实验结果表明,热量积累并不明显。然而,当风的强度变得强烈的微风时,外部空气会涌入建筑物。结果表明,传统和改进的屋顶洞穴呼吸机在不同的风场中的性能。

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