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Dispersion of exhalation pollutants in a two-bed hospital ward with a downward ventilation system

机译:向下通风系统在两张病床的病房中散发呼气污染物

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The Centers for Disease Control and Prevention has recommended the use of downward ventilation systems in isolation rooms to reduce the risk of cross-infection from airborne transmissible diseases. The expected airflow pattern of a downward ventilation design would supply cooler and slightly heavier clean air from a ceiling diffuser to push down contaminants, which would then be removed via outlets at floor level. A "laminar" (strictly speaking, unidirectional) flow is expected to be produced to avoid flow mixing and thus reduce cross-infection risk. Experiments were carried out in a full-scale experimental hospital ward with a downward ventilation system to investigate the possibility of applying downward ventilation in a general hospital ward. Two life-sized breathing thermal manikins were used to simulate a source patient and a receiving patient. Computation fluid dynamics was also used to investigate the airflow pattern and pollutant dispersion in the test ward. Based on both experimental and numerical results, the laminar airflow pattern was shown to be impossible to achieve due to turbulent flow mixing and flow entrainment into the supply air stream. The thermal plumes produced above people were found to induce flow mixing. We also studied the effects of the locations of the supply and extraction openings on both the flow pattern and pollutant exposure level in the occupied zone. A number of practical recommendations are suggested.
机译:疾病控制与预防中心建议在隔离室中使用向下通风系统,以减少因空气传播的传染病而交叉感染的风险。向下通风设计的预期气流模式将从天花板扩散器提供较凉的空气和稍重的清洁空气,以推动污染物进入,然后通过地板上的出口将其清除。预期会产生“层流”(严格来说是单向的)流,以避免流混合,从而降低交叉感染的风险。在具有向下通风系统的大型实验医院病房中进行实验,以研究在普通医院病房中进行向下通风的可能性。使用了两个真人大小的呼吸热人体模型来模拟源患者和接收患者。计算流体动力学也被用于研究测试病房的气流模式和污染物扩散。根据实验和数值结果,由于湍流混合和气流夹带进入送风气流,因此无法实现层流气流模式。人们发现在人上方产生的热羽会引起流动混合。我们还研究了进风口和排风口位置对居住区中流型和污染物暴露水平的影响。提出了许多实用的建议。

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