Feng Zhuangbo, Cao Shi-Jie, Wang Junqi, Kumar Prashant, Haghighat Fariborz
School of Architecture, Southeast University, 2 Sipailou, Nanjing, 210096, China.
Global Centre for Clean Air Research (GCARE), Department of Civil and Environmental Engineering, Faculty of Engineering and Physical Sciences, University of Surrey, Guildford, United Kingdom.
Build Environ. 2021 Aug;200:107956. doi: 10.1016/j.buildenv.2021.107956. Epub 2021 May 12.
Airborne transmissions of infectious disease (e.g. SARS-CoV-2) in indoor environments may induce serious threat to public health. Air purification devices are necessary to remove and/or inactivate airborne biological species from indoor air environment. Corona discharge in an electrostatic precipitator is capable of removing particulate matter and disinfecting biological aerosols to act as electrostatic disinfector (ESD). The ions generated by ESD can effectively inactivate bacteria/viruses. However, the available research rarely investigated disinfection effect of ESD, and it is urgent to develop quantitative ESD design methods for building mechanical ventilation applications. This study developed an integrated numerical model to simulate disinfection performance of ESD. The numerical model considers the ionized electric field, electrohydrodynamic flow, and biological disinfection. The model prediction was validated with the experimental data (): Good agreement was observed. The validated model then was used to study the influences of essential design parameters (e.g. voltage, inlet velocity) of ESD on disinfection efficiency. The effects of modeling of electrophoretic force and EHD (electrohydrodynamic) flow patterns on disinfection efficiency and computing time were also analyzed. The disinfection efficiency of well-designed ESD (with space charge density of 3.6 × 10 C/m) could be as high as 100%. Compared with HEPA, ESD could save 99% of energy consumed by HEPA without sacrificing disinfection efficiency.
室内环境中传染病(如新型冠状病毒)的空气传播可能会对公众健康造成严重威胁。空气净化设备对于从室内空气环境中去除和/或灭活空气传播的生物物种是必要的。静电除尘器中的电晕放电能够去除颗粒物并对生物气溶胶进行消毒,从而起到静电消毒器(ESD)的作用。ESD产生的离子能够有效灭活细菌/病毒。然而,现有的研究很少探讨ESD的消毒效果,迫切需要为建筑机械通风应用开发定量的ESD设计方法。本研究开发了一个综合数值模型来模拟ESD的消毒性能。该数值模型考虑了电离电场、电流体动力学流动和生物消毒。模型预测结果与实验数据进行了验证(:观察到良好的一致性。然后,使用经过验证的模型来研究ESD的基本设计参数(如电压、入口速度)对消毒效率的影响。还分析了电泳力建模和EHD(电流体动力学)流动模式对消毒效率和计算时间的影响。设计良好的ESD(空间电荷密度为3.6×10 C/m)的消毒效率可高达100%。与高效空气过滤器相比,ESD在不牺牲消毒效率的情况下可节省高效空气过滤器99%的能耗。