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Supermicron particle deposition from turbulent chamber flow onto smooth and rough vertical surfaces

机译:超微粒子从湍流腔室中流到光滑和粗糙的垂直表面上

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摘要

Deposition to indoor surfaces influences human exposures and material damage from airborne particulate matter. Experiments were conducted to study the deposition of monodisperse particles in the diameter range 0.9-9 μm from turbulent flow onto smooth and rough vertical chamber surfaces. Fluorescent particles were injected continuously into a stirred 1.8-m~3 aluminum chamber for a period of several hours. Deposition was measured on smooth glass plates and sandpaper with four different roughness scales that had been mounted on two opposing vertical sidewalls. Deposition velocities were determined as the ratio of deposited particle flux density to airborne particle concentrations. Contrary to expectations, particle deposition onto smooth and rough vertical surfaces was observed to increase with diameter for most conditions, especially for the larger particle sizes. Deposition velocity increased only moderately with increasing surface roughness.
机译:沉积在室内表面会影响人体暴露以及空气传播的颗粒物造成的材料损坏。进行实验以研究从湍流到直径为0.9-9μm的单分散颗粒在光滑和粗糙的垂直腔室表面上的沉积。连续几个小时将荧光颗粒连续注入搅拌的1.8-m〜3铝室中。在安装在两个相对的垂直侧壁上的具有四个不同粗糙度等级的光滑玻璃板和砂纸上测量沉积。沉积速度确定为沉积颗粒通量密度与空气传播颗粒浓度之比。与预期相反,在大多数情况下,尤其是较大粒径的颗粒,观察到颗粒在光滑和粗糙的垂直表面上的沉积随直径的增加而增加。沉积速度仅随着表面粗糙度的增加而适度增加。

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