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HVAC filtration for controlling infectious airborne disease transmission in indoor environments: Predicting risk reductions and operational costs

机译:用于控制室内环境中传染性空气传播疾病传播的HVAC过滤:预测降低的风险和运营成本

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摘要

This work describes and applies a methodology tor estimating the impact ot recirculatmg heating, ventilating, and air-conditioning (HVAC) particle filters on the control of size-resolved infectious aerosols in indoor environments using a modified version of the Wells-Riley model for predicting risks of infectious disease transmission. Estimates of risk reductions and associated operational costs of both HVAC filtration and equivalent outdoor air ventilation are modeled and compared using a case study of airborne transmission of influenza in a hypothetical office space. Overall, recirculating HVAC filtration was predicted to achieve risk reductions at lower costs of operation than equivalent levels of outdoor air ventilation, particularly for MERV 13-16 filters. Medium efficiency filtration products (MERV 7-11) are also inexpensive to operate but appear less effective in reducing infectious disease risks.
机译:这项工作描述并应用了一种方法,该方法使用改进的Wells-Riley模型进行预测,以估算再循环,加热,通风和空调(HVAC)颗粒过滤器对室内环境中尺寸分辨的传染性气溶胶的控制影响传染病传播的风险。对HVAC过滤和等效的室外空气通风的降低风险的估算以及相关的运营成本进行了建模,并使用假设的办公空间中的流感病毒传播传播进行了案例研究。总的来说,与同等水平的室外空气通风相比,尤其是对于MERV 13-16过滤器,循环HVAC过滤预计将以较低的运行成本降低风险。中效过滤产品(MERV 7-11)的操作成本也不高,但在降低传染病风险方面似乎不太有效。

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