首页> 外文期刊>The Annals of occupational hygiene. >A recirculation aerosol wind tunnel for evaluating aerosol samplers and measuring particle penetration through protective clothing materials.
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A recirculation aerosol wind tunnel for evaluating aerosol samplers and measuring particle penetration through protective clothing materials.

机译:循环气雾风洞,用于评估气雾采样器并测量颗粒穿过防护服材料的穿透力。

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A recirculation aerosol wind tunnel was designed to maintain a uniform airflow and stable aerosol size distribution for evaluating aerosol sampler performance and determining particle penetration through protective clothing materials. The oval-shaped wind tunnel was designed to be small enough to fit onto a lab bench, have optimized dimensions for uniformity in wind speed and particle size distributions, sufficient mixing for even distribution of particles, and minimum particle losses. Performance evaluation demonstrates a relatively high level of spatial uniformity, with a coefficient of variation of 1.5-6.2% for wind velocities between 0.4 and 2.8 m s(-1) and, in this range, 0.8-8.5% for particles between 50 and 450 nm. Aerosol concentration stabilized within the first 5-20 min with, approximately, a count median diameter of 135 nm and geometric standard deviation of 2.20. Negligible agglomerate growth and particle loss are suggested. The recirculation design appears to result in unique features as needed for our research.
机译:设计了一个再循环气雾风洞,以维持均匀的气流和稳定的气雾尺寸分布,从而评估气雾采样器的性能并确定颗粒通过防护服材料的渗透性。椭圆形的风洞设计得足够小,可以安装在实验室工作台上,并具有优化的尺寸以实现风速和粒径分布的均匀性,充分混合以实现均匀的颗粒分布以及最小的颗粒损失。性能评估表明相对较高的空间均匀性,风速在0.4到2.8 ms(-1)之间时变化系数为1.5-6.2%,在此范围内,在50到450 nm之间的粒子变化系数为0.8-8.5% 。在最初的5-20分钟内,气溶胶浓度稳定,计数中值直径约为135 nm,几何标准偏差为2.20。建议的团聚体增长和颗粒损失可忽略不计。再循环设计似乎具有我们研究所需的独特功能。

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