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Quantify impacted scope of human expired air under different head postures and varying exhalation rates

机译:量化在不同头部姿势和不同呼气率下人类呼出空气的影响范围

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Many researches indicate human respiration flow and background ventilation are two important aspects leading to possible respiratory disease spread. However, current studies on respiration flow and the resulted exhaled pollutant dispersion are limited, because different head postures, respiration mode, breath rate, room ventilation and so on, can exert profound impacts that are not understood very clearly. To evaluate the role of head postures on transmission of human exhaled pollutants, this study uses a computational fluid dynamics (CFD) program to study the exhalation flow of a sitting adult in a calm indoor office. Four different head postures are considered: sitting upright viewing front, sitting upright but head tilted viewing upward, sitting upright but head turned viewing the lateral, and sitting but pillowing head on a table. Based on the decay percentage of a gas concentration, the impacted scope of expired air is identified. The common posture by sitting upright viewing front is selected to investigate the change of impacted scope with increasing exhalation rates. The experimental test is also carried out using a breathing thermal manikin. This study finds out that the impacted scope of expired air under different head postures is different. The horizontal impacted distance is highly dependent on the specified threshold concentration. If a person sits around at a table and makes a deep exhalation, other people shall be apart from him/her with a larger distance to be free from the exhaled pollutant exposure, once his/her thermal plume is blocked by the table.
机译:许多研究表明,人的呼吸流量和背景通气是导致呼吸系统疾病传播的两个重要方面。但是,目前有关呼吸流量和所产生的呼出污染物扩散的研究是有限的,因为不同的头部姿势,呼吸方式,呼吸频率,房间通风等可能产生深远的影响,而目前尚不清楚。为了评估头部姿势在人类呼出污染物传播中的作用,本研究使用计算流体力学(CFD)程序研究了在安静的室内办公室中坐着的成年人的呼气流量。考虑了四种不同的头部姿势:坐直看前方,坐直但头部倾斜向上看,坐直但头转身观察侧面,以及将头枕在桌子上。根据气体浓度的衰减百分比,确定呼出空气的影响范围。选择通过坐直观察前方的共同姿势来调查随着呼气率增加受影响范围的变化。还使用呼吸式暖体假人进行了实验测试。本研究发现,在不同的头部姿势下,呼出空气的影响范围是不同的。水平冲击距离高度取决于指定的阈值浓度。如果一个人坐在桌子旁深呼吸,一旦桌子上的热羽被阻塞,其他人应远离他/她,以免呼出污染物。

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