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Investigating a safe ventilation rate for the prevention of indoor SARS transmission: An attempt based on a simulation approach

机译:研究预防室内SARS传播的安全通风率:基于模拟方法的尝试

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摘要

This paper identifies the “safe ventilation rate” for eliminating airborne viral infection and preventing cross-infection of severe acute respiratory syndrome (SARS) in a hospital-based setting. We used simulation approaches to reproduce three actual cases where groups of hospital occupants reported to be either infected or not infected when SARS patients were hospitalized in nearby rooms. Simulations using both computational fluid dynamics (CFD) and multi-zone models were carried out to understand the dilution level of SARS virus-laden aerosols during these scenarios. We also conducted a series of measurements to validate the simulations. The ventilation rates (dilution level) for infection and non-infection were determined based on these scenarios. The safe ventilation rate for eliminating airborne viral infection is to dilute the air emitted from a SARS patient by 10000 times with clean air. Dilution at lower volumes, specifically 1000 times, is insufficient for protecting non-infected people from SARS exposure and the risk of infection is very high. This study provides a methodology for investigating the necessary ventilation rate from an engineering viewpoint.
机译:本文确定了一种“安全通气率”,用于消除以医院为基础的空气传播病毒感染和预防严重急性呼吸道综合症(SARS)的交叉感染。我们使用模拟方法重现了三个实际案例,其中当SARS患者在附近的房间住院时,报告了感染或未感染的医院居住者群体。进行了使用计算流体动力学(CFD)和多区域模型的模拟,以了解在这些情况下含有SARS病毒的气溶胶的稀释水平。我们还进行了一系列测量以验证仿真。根据这些情况确定感染和未感染的通气率(稀释水平)。消除空气传播的病毒感染的安全通风率是用干净的空气将SARS患者的空气稀释10000倍。较低的稀释度(特别是1000倍)不足以保护未感染者免受SARS的感染,感染的风险非常高。这项研究提供了一种从工程学角度研究必要通风率的方法。

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