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An Experimental Study On Ventilation Efficiency Of Isolation Room

机译:隔离室通风效率的实验研究

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This paper presents an experimental modeling of contaminant dispersion in a mock-up isolation room with different negative pressure differentials and ventilation rates. A hypothetical contaminant (sulfur hexafluoride, SF_6) is emitted from a patient lying on a bed in the mock-up isolation room. The impacts of ventilation rates 12 and 24 h~(-1) and pressure differentials -2.5, -5.0, -8.0, and -15.0 Pa on the ventilation effectiveness in the room are evaluated quantitatively. A local air quality index and an exposure index for healthcare workers are introduced in the research to evaluate the ventilation efficiency of the isolation room. Based on the results of our experiment, the ventilation efficiency of the isolation room ranks the highest at -15.0 Pa/24 h~(-1) followed, respectively, by -15.0 Pa/12 h~(-1), -8.0 Pa/24 h~(-1), -5.0 Pa/24 h~(-1), -2.5 Pa/24 h~(-1), -8.0 Pa/12 h~(-1), -5.0 Pa/12 h~(-1), and -2.5 Pa/12 h~(-1).
机译:本文介绍了在具有不同负压差和通风率的样机隔离室中污染物扩散的实验模型。假想的污染物(六氟化硫,SF_6)从模型隔离室中躺在床上的患者身上散发出来。定量评估通风速率12和24 h〜(-1)以及压差-2.5,-5.0,-8.0和-15.0 Pa对房间通风效率的影响。研究中引入了当地的空气质量指数和医护人员的暴露指数,以评估隔离室的通风效率。根据我们的实验结果,隔离室的通风效率最高,为-15.0 Pa / 24 h〜(-1),其次为-15.0 Pa / 12 h〜(-1),-8.0 Pa / 24 h〜(-1),-5.0 Pa / 24 h〜(-1),-2.5 Pa / 24 h〜(-1),-8.0 Pa / 12 h〜(-1),-5.0 Pa / 12 h〜(-1)和-2.5 Pa / 12 h〜(-1)。

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