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Occupancy-aided ventilation for both airborne infection risk control and work productivity

机译:空气传播风险控制和工作生产率的占用辅助通风

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摘要

Reducing airborne infectious risk is crucial for controlling infectious respiratory diseases (e.g., COVID-19). The airborne transmissibility of COVID-19 is high so that the common ventilation rate may be insufficient to dilute the airborne pathogens, particularly in public buildings with a relatively large occupancy density. Reducing occupancy can reduce the pathogen load thereby reducing airborne infection risk. However, reduced occupancy deteriorates work productivity due to the lost hours of work. This study proposes an occupancy-aided ventilation strategy for constraining the airborne infection risk and minimizing the loss of work productivity. Firstly, two mechanisms of occupancy schedule (alternative changeovers between normal occupancy and reduced occupancy) for reducing the airborne infection risk and loss of work productivity are revealed based on analyzing features of the indoor concentration profile of exhaled aerosols. Secondly, optimization of the occupancy schedule is developed to maximize the total time length of normal occupancy for the minimum loss in work productivity while satisfying the constraint on airborne infection risk (e.g., with the reproduction number less than one). The airborne infection risk is evaluated with the rebreathed fraction model. Case studies on COVID-19 in a classroom demonstrate that the proposed occupancy-aided ventilation is effective with an earning ratio of 1.67 (the ratio of the improvement in health outcome to the loss in work productivity) and is robust to the variable occupancy loads and occupancy flexibilities.
机译:降低空气传播的传染性风险对于控制传染病疾病至关重要(例如,Covid-19)。 Covid-19的空气传播性很高,因此普通通风率可能不足以稀释空气传播的病原体,特别是在具有相对较大的占用密度的公共建筑物中。减少占用率可以降低病原体载荷,从而降低了空气载体的感染风险。然而,由于工作小时数,减少的占用率恶化了工作生产率。本研究提出了一种占用辅助通风策略,用于约束空中感染风险,最大限度地减少工作生产率的损失。首先,基于分析呼出气雾剂的室内浓度剖面的分析,揭示了用于降低空气传播风险和工作损失的占用时间表(正常占用和占用率之间的替代转换)。其次,开发了占用时间表的优化,以最大限度地提高正常占用的总时间长度,以满足空中感染风险的限制(例如,少于一个的再现号)。通过释放的级分模型评估空中感染风险。案例研究在教室中的Covid-19表明,所提出的占用辅助通风是有效的1.67(健康结果的改善与工作生产率的损失的比率),并且对可变占用载荷和稳健占用灵活性。

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