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Flow impact of an air conditioner to portable air cleaning

机译:空调对便携式空气净化的流量影响

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In order to reduce indoor pollutant exposure, people become increasingly interested in portable air cleaning devices, which can be positioned with flexibility. Such purification devices usually discharge cleaned air with strong momentum, which can interrupt indoor airflow created by air-conditioning units. If a well-organized air circulation to a portable air cleaner is not achieved, indoor air purification cannot be fully ensured. This study has used both measurement and computational fluid dynamics (CFD) modeling to investigate the flow interaction between an air conditioner and a portable air cleaner to purify indoor gaseous pollutants. A workshop environment conditioned by an air conditioner and cleaned by a portable air cleaner was mimicked in an environmental chamber to obtain data for validation of a CFD program. Then CFD was applied to evaluate factors that may affect air purification including: positioning of the air conditioner and air cleaner, air conditioner diffuser types, air-conditioning cooling or heating running mode, and location of pollutant sources. The study finds the simulation results are in good agreement with the corresponding experimental data. The positioning coordination of an air conditioner and an air cleaner, and selection of air conditioner diffuser types shall assure a good air circulation cycle to the air cleaner to improve air purification efficacy. In addition to the cleaner effectiveness, it is also recommended to evaluate an air cleaning device in terms of the absolute pollutant concentration, if the portable air cleaner is under the interaction of an air conditioner and the local performance data are interested.
机译:为了减少室内污染物暴露,人们对便携式空气清洁设备越来越感兴趣,该设备可以灵活地放置。这种净化装置通常会排出具有强烈动量的净化空气,这会中断空调装置产生的室内气流。如果不能很好地将空气循环到便携式空气滤清器,则无法充分确保室内空气净化。这项研究同时使用了测量和计算流体动力学(CFD)建模来研究空调和便携式空气净化器之间的流动相互作用,以净化室内气体污染物。在环境室内模拟了由空调调节并由便携式空气净化器清洁过的车间环境,以获得用于CFD程序验证的数据。然后,CFD被用于评估可能影响空气净化的因素,包括:空调和空气滤清器的位置,空调扩散器的类型,空调制冷或制热运行模式以及污染物源的位置。研究发现仿真结果与相应的实验数据吻合良好。空调和空气滤清器的定位配合,以及空调扩散器类型的选择,应确保空气滤清器有良好的空气循环周期,以提高空气净化效率。除了清洁器的有效性外,如果便携式空气清洁器处于空调的作用下并且需要本地性能数据,则还建议根据绝对污染物浓度评估空气清洁器。

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