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首页> 外文期刊>Journal of building performance simulation >Influence of human movement on the transport of airborne infectious particles in hospital
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Influence of human movement on the transport of airborne infectious particles in hospital

机译:人体运动对医院中空气中传染性微粒运输的影响

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摘要

The impacts of human movement on the distribution of airborne infectious particles in hospital environment are investigated numerically. In the case of airborne infection isolation room, the influence of different walking speeds on the distribution of respiratory droplets is investigated by adopting the Lagrangian method for tracing the motion of droplets, the dynamic mesh model for describing human walking and the Eulerian unsteady Reynolds-averaged Navier-Stokes model for solving the airflow. In the case of operating theatre, the impact of surgeon bending movement on the distribution of bacteria-carrying particles (BCPs) is investigated by using a similar approach, except that the drift-flux model is used for modelling BCPs distribution. The adopted models are successfully validated against reported experimental data. The results show that both walking speed and bending posture change considerably the suspended droplets concentration in a room. The key factors regarding the simulation techniques are discussed.
机译:数值研究了人类活动对医院环境中空气传播的传染性颗粒分布的影响。在空气传播隔离室中,采用拉格朗日法追踪飞沫的运动,描述人类行走的动态网格模型和欧拉非稳态雷诺平均,研究了不同步行速度对呼吸飞沫分布的影响。 Navier-Stokes模型用于求解气流。在手术室中,除了使用漂移通量模型来建模BCP分布外,还使用类似的方法研究了外科医生弯曲运动对细菌携带颗粒(BCP)分布的影响。采用的模型已针对报告的实验数据成功进行了验证。结果表明,步行速度和弯曲姿势都会显着改变房间中的悬浮液滴浓度。讨论了有关仿真技术的关键因素。

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