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Transport of gaseous pollutants by convective boundary layer around a human body

机译:气态污染物通过对流边界层在人体周围的传输

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摘要

This study investigates the ability of the human convective boundary layer to transport pollution in a quiescent indoor environment. The impact of the source location in the vicinity of a human body is examined in relation to pollution distribution in the breathing zone and the thickness of the pollution boundary layer. The study, in addition, evaluates the effects of the room air temperature, table positioning, and seated body inclination. The human body is represented by a thermal manikin that has a body shape, size, and surface temperature that resemble those of a real person. The results show that the source location has a considerable influence on the breathing zone pollution concentrations and on the thickness of the pollution boundary layer. The highest breathing zone concentrations are achieved when the pollution is located at the chest, while there is negligible exposure for the pollution emitted at the upper back or behind the chair. The results also indicate that a decrease in personal exposure to pollutants released from or around the human body increases the extent to which the pollution spreads to the surroundings. Reducing the room air temperature or backward body inclination intensifies the transport of the pollution to the breathing zone and increases personal exposure. The front edge of a table positioned at zero distance from the human body can reduce the pollution transport to the breathing zone, or it can increase transport of the clean air from beneath if positioned at a 10-cm (0.33-ft) distance.
机译:这项研究调查了人类对流边界层在静态室内环境中传输污染的能力。根据呼吸区域中的污染分布和污染边界层的厚度,检查了源位置在人体附近的影响。此外,该研究还评估了室内空气温度,桌子位置和坐姿倾斜的影响。人体由热人体模型代表,其人体形状,大小和表面温度类似于真实人的身体形状,大小和表面温度。结果表明,污染源的位置对呼吸区污染浓度和污染边界层的厚度有很大影响。当污染物位于胸部时,呼吸区域的浓度最高,而椅背或椅背排放的污染物的暴露量可以忽略不计。结果还表明,个人接触从人体或人体周围释放的污染物的情况有所减少,这增加了污染物扩散到周围环境的程度。降低室内空气温度或身体向后倾斜会加剧污染物向呼吸区的传输,并增加个人暴露。与人体零距离放置的桌子的前边缘可以减少污染物向呼吸区域的传输,如果放置在10厘米(0.33英尺)的距离,则可以增加来自下方的清洁空气的传输。

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