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Control of exposure to exhaled air from sick occupant with wearable personal exhaust unit

机译:通过可穿戴式个人排气装置控制患病人员呼出的空气

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摘要

Exposure reduction to exhaled air from a sick doctor wearing personal exhaust unit incorporated in headset-microphone was studied. Experiments were performed in a full-scale test room furnished as a double-bed hospital room with overhead ventilation at 3, 6 and 12 ACH. Room air temperature was 22 °C. Breathing thermal manikin with realistic body and breathing cycle was used to mimic doctor. Second thermal manikin and heated dummy were used to resemble lying patients. Exhaled air by the doctor was mixed with tracer gas to mimic pathogens. The unit was positioned frontally by the mouth of the doctor at three different distances. It was operated at 0.25 or 0.50 L/s under mixing background ventilation at 3 ACH. The use of wearable personal exhaust resulted in cleaner air in the room compared to mixing alone at 12 ACH. The high potential to capture exhaled air makes the device efficient against airborne pathogens.
机译:研究人员佩戴了耳机麦克风中装有个人排气装置的生病医生减少了呼出空气的暴露。实验是在配备有双人床病房的大型测试室中进行的,该病房在ACH,3、6和12 ACH处具有高架通风。室温为22℃。呼吸热人体模型具有逼真的身体和呼吸周期,用于模仿医生。第二热人体模型和加热的假人被用来模仿躺着的病人。医生呼出的空气与示踪气体混合以模仿病原体。该单元在医生的嘴前放置在三个不同的位置。它在3 ACH混合背景通风下以0.25或0.50 L / s的速度运行。与在12 ACH处单独混合相比,可穿戴个人排气设备的使用使室内空气更加清洁。捕获呼出空气的高潜力使该设备能够有效抵抗空气传播的病原体。

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