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Airflow characteristics generated by fabric air dispersion ventilation

机译:织物空气分散通风产生的气流特性

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The air distribution characteristics of a fabric air dispersion system (FADS) were investigated experimentally in a full-scale chamber. The jet supply velocity and outlet orientation were selected as the major factors that affect the FADS airflow field. The FADS airflow structure was described and verified in a visualization experiment and compared with the air patterns of the traditional rectangular, circular nozzle and linear slot diffusers. The induction and flow junction phenomena were analysed under different combinations of outlet orientations. Experimental results showed that this induction phenomenon can create more airflow patterns and that the FADS can meet different requirements in practical engineering. The turbulence intensity of the air supply orifices, the maximum velocity decay, and the self-similarity of the velocity profiles were examined through velocity field measurements. Our research illustrated the advantages of two-dimensional flow characteristics of the FADS model that can be treated as a plane free jet in the developed region. The phenomenon we studied should provide useful guide for the application of the FADS to heating, ventilation, and air-conditioning systems.
机译:在全尺寸室内对织物空气分散系统(FADS)的空气分布特性进行了实验研究。选择射流的供应速度和出口方向作为影响FADS气流场的主要因素。在可视化实验中对FADS的气流结构进行了描述和验证,并与传统的矩形,圆形喷嘴和线性槽式扩散器的空气模式进行了比较。在出口方向的不同组合下分析了诱导和流动结合现象。实验结果表明,这种诱导现象可以产生更多的气流模式,并且FADS可以满足实际工程中的不同要求。通过速度场测量检查了进气孔的湍流强度,最大速度衰减和速度曲线的自相似性。我们的研究表明了FADS模型的二维流动特征的优势,该特征可以在发达地区视为平面自由射流。我们研究的现象应该为FADS在加热,通风和空调系统中的应用提供有用的指导。

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