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Intermittent occupancy combined with ventilation: An efficient strategy for the reduction of airborne transmission indoors

机译:间歇性占用相结合通风:在室内减少空气传输的有效策略

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摘要

It is important that efficient measures to reduce the airborne transmission of respiratory infectious diseases (including COVID-19) should be formulated as soon as possible to ensure a safe easing of lockdown. Ventilation has been widely recognized as an efficient engineering control measure for airborne transmission. Room ventilation with an increased supply of clean outdoor air could dilute the expiratory airborne aerosols to a lower concentration level. However, sufficient increase is beyond the capacity of most of the existing mechanical ventilation systems that were designed to be energy efficient under non-pandemic conditions. We propose an improved control strategy based on source control, which would be achieved by implementing intermittent breaks in room occupancy, specifically that all occupants should leave the room periodically and the room occupancy time should be reduced as much as possible. Under the assumption of good mixing of clean outdoor supply air with room air, the evolution of the concentration in the room of aerosols exhaled by infected person(s) is predicted. The risk of airborne cross-infection is then evaluated by calculating the time-averaged intake fraction. The effectiveness of the strategy is demonstrated for a case study of a typical classroom. This strategy, together with other control measures such as continuous supply of maximum clean air, distancing, face-to-back layout of workstations and reducing activities that increase aerosol generation (e.g., loudly talking and singing), is applicable in classrooms, offices, meeting rooms, conference rooms, etc.
机译:重要的是,应尽快制定减少呼吸道传染病(包括Covid-19)的空气传播的有效措施,以确保安全缓解锁定。通风被广泛认为是空降传输的有效工程控制措施。随着清洁室外空气供应增加的房间通风可以稀释到呼气的空气溶解到较低的浓度水平。然而,足够的增加超出了大多数现有机械通风系统的能力,这些机械通风系统被设计为在非流行性条件下能够有效。我们提出了一种基于源控制的改进控制策略,这将通过在房间占用中实施间歇性休息,特别是所有乘员应定期离开房间,并且应尽可能减少房间占用时间。在使用室内空气的清洁室外供应空气的良好混合的假设下,预测了受感染人口呼出的气溶胶室中浓度的演变。然后通过计算时间平均进气部分来评估空气传播的风险。对典型教室的案例研究证明了该战略的有效性。这种策略以及其他控制措施,如连续供应最大的清洁空气,远距离,背靠背的工作站布局以及减少增加气溶胶生成的活动(例如,大声谈话和唱歌),适用于课堂,办公室,会议室,会议室等。

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