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A numerical investigation of vertical and horizontal laminar airflow ventilation in an operating room

机译:手术室垂直和水平层流通风的数值研究

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The effectiveness of vertical and horizontal ventilation systems in terms of reducing sedimentation and distribution of bacteria-carrying particles in an operating room is investigated. The exploration is carried out numerically using computational fluid dynamics. Both airborne particle concentration and sedimentation are simulated under different ventilation flow conditions. Model validation is performed through comparisons with experimental data from the literature. Achieved results reveal that the preferred selection between vertical and horizontal ventilation scenario in an operating room is highly depend on internal constellation of obstacles, work practice and supply airflow rate. Improper positioning of operating room personnel may remarkably reduce the ventilation efficiency. Increasing the airflow rate reduces particle concentration in the surgical zone. Efficient ventilation, however, is not only a matter of increasing airflow rate. Inappropriate airflow rates result in flow pattern transition from laminar to less efficient turbulent mixing. A laminar and well- organized (unidirectional) flow pattern is retired for a good result. Innovative further solutions are suggested to be found in cross-disciplinary collaboration.
机译:研究了垂直和水平通风系统在减少手术室中携带细菌的颗粒物的沉降和分布方面的有效性。使用计算流体动力学以数值方式进行探索。空气中颗粒物的浓度和沉降都是在不同通风条件下模拟的。通过与文献中的实验数据进行比较来进行模型验证。取得的结果表明,在手术室中垂直和水平通风方案之间的最佳选择高度取决于障碍物的内部星座,工作习惯和送风量。手术室人员放置不当可能会显着降低通风效率。增加气流速率会降低手术区域中的颗粒浓度。但是,有效的通风不仅是增加空气流量的问题。不合适的气流速率导致流型从层流过渡到效率较低的湍流混合。淘汰了层流且井井有条的(单向)流型,从而获得了良好的效果。建议在跨学科合作中找到更多创新的解决方案。

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