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Experimental and Numerical Analysis of the Relationship Between Indoor and Outdoor Airborne Particles in an Operating Room

机译:手术室内和室外空气中颗粒物关系的实验和数值分析

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This work investigated the impact of the HVAC filtration system and indoor particle sources on the relationship between indoor and outdoor airborne particle size and concentrations in an operating room. Filters with efficiency between 65% and 99.97% were used in the investigation and indoor and outdoor particle size and concentrations were measured. A balance mass model was used forthe simulation of the impact of the surgical team, deposition rate, HVAC exhaust and air change rates on indoor particle concentration. The experimental results showed that high efficiency filters would not be expected to decrease the risk associated with indoor particles larger than approximately 1 μm in size because normal filters are relatively efficient for these large particles. A good fraction of outdoor particles were removed by deposition on the HVAC system surfaces and this deposition increased with particle size. For particles of 0.3-0.5 μrn in diameter, particle reduction was about 23%, while for particles >10μm the loss was about 78%. The modelling results showed that depending on the type of filter used, the surgical team generated between 93% and 99% of total particles, while the outdoor air contributed only 1-6%.
机译:这项工作研究了HVAC过滤系统和室内颗粒物源对手术室内和室外机载颗粒物大小与浓度之间关系的影响。在研究中使用了效率在65%至99.97%之间的过滤器,并测量了室内和室外的粒径和浓度。使用平衡质量模型来模拟手术团队,沉积率,HVAC排气和空气变化率对室内颗粒浓度的影响。实验结果表明,不会期望高效过滤器降低与室内颗粒大小大于大约1μm相关的风险,因为普通过滤器对于这些大颗粒而言是相对有效的。通过沉积在HVAC系统表面上,可以去除大量的室外颗粒,并且这种沉积随着颗粒尺寸的增加而增加。对于直径为0.3-0.5μm的颗粒,颗粒减少约23%,而对于直径大于10μm的颗粒,损失约78%。建模结果表明,根据使用的过滤器类型,手术团队产生的微粒总数介于93%至99%之间,而室外空气仅贡献了1-6%。

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