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首页> 外文期刊>Atmospheric environment >Aerosolization of Aspergillus niger spores from growing colonies on a bare tube
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Aerosolization of Aspergillus niger spores from growing colonies on a bare tube

机译:从裸露管上生长的菌落雾化黑曲霉孢子

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Aerosolization of fungal spores from the cooling coils of a heating, ventilating and air conditioning (HVAC) system can cause adverse health effects. As air sweeps across a coil, it may accelerate and decelerate, and the resulting spore detachment may vary according to the position of the fungal colonies on the coil in relation to the airflow. This study used a circular tube in a wind tunnel to represent a single coil. The aerosolization of Aspergillus niger spores from a colony in a carved groove along the longitudinal direction of the tube was investigated. Growing colonies at four different positions on the tube surface were subjected to blowing air. The airflow surrounding the circular tube was numerically solved to estimate the drag force necessary to detach the spores. The results revealed that the quantities of collected airborne spores when the colonies were positioned tangentially to the incoming airflow were four to 12 times those when the colonies were aligned with the airflow under the threshold blowing air speeds. The local air speeds at the height of the growing fungi could differ greatly from the inlet mainstream air speed. This difference should be taken into account in estimations of the drag force required to aerosolize the fungal spores on the tubes.
机译:加热,通风和空调(HVAC)系统的冷却盘管中真菌孢子的雾化会导致不良的健康影响。当空气扫过盘管时,它可能会加速和减速,并且产生的孢子分离可能会根据盘管上真菌菌落相对于气流的位置而变化。这项研究使用风洞中的圆形管代表单个线圈。研究了沿管的纵向在刻槽中从菌落中喷出的黑曲霉孢子的雾化。管表面上四个不同位置的生长菌落受到吹气的作用。数值求解圆形管周围的气流,以估算分离孢子所需的阻力。结果表明,当菌落与进入的气流成切线位置时,收集到的悬浮空气孢子的数量是当菌落与气流在阈值吹气速度下对齐时的四到十二倍。生长真菌高度处的局部风速可能与进口主流风速有很大差异。在估算雾化试管上真菌孢子所需的阻力时,应考虑到这种差异。

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