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Numerical investigation on the transmission and dispersion of aerosols in a 7-stories building drainage system

机译:7层建筑排水系统中气溶胶透射和分散的数值研究

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In previous reports, the positive SARS-CoV-2 nucleic acid was detected in the fecal samples from confirmed pneumonia patients, suggesting a high probability of the fecal-oral transmission. To date, however, the role played by the drainage system of a high-rise building in the virus transmission is not clear and especially studies on the dynamics mechanism behind is scarce. From this point of view, the present work carries out a computational fluid dynamics (CFD) modeling to investigate the effects of the water seal effectiveness of the floor drain, the negative/positive pressures (P1, P2) in the bathroom, temperature differential (Delta T), outside wind velocity (v), the piping fittings and the negative pressure at the cowl (P3) on the transmission of the virus-laden aerosol particles in a drainage system of a typical 7-storeys residential building. The CFD models are first validated by the previous experiments in literature. Numerical results imply that the drainage system might play an essential role to the virus transmission. Then, results indicate that, the leakage risk of the aerosol particles via the floor drain with inefficient water-seal (UFD) mainly exists at the upper floors above the neutral pressure level (NPL). Besides, the negative and positive pressures at the bathroom can enhance and reduce the exposure risk of aerosol particles from the corresponding UFD, respectively. The Delta T increasing does not modify the location of the NPL. Moreover, the exposure risk of aerosol particles can be effectively avoided by the well water-sealed floor drains and/or the presence of a proper negative pressure at the cowl on the top floor. Finally, based on the CFD results, several protection suggestions on the drainage system and human activities are provided.
机译:在先前的报道中,在来自确诊的肺炎患者的粪便样本中检测到正SARS-COV-2核酸,表明粪便口腔的高概率。然而,迄今为止,病毒传播中高层建筑物的排水系统发挥的作用尚不清楚,特别是对背后的动态机制的研究是稀缺的。从这个角度来看,目前的工作执行了计算流体动力学(CFD)模型,以研究地板流失的水密封效果,浴室中的负/正压(P1,P2)的效果,温度差异( ΔT),外部风速(V),管道配件和牛仔(P3)的负压,在典型的7层居民住宅建筑的排水系统中的病毒 - 升起气溶胶颗粒的传播。先前的文献实验首先验证CFD模型。数值结果意味着排水系统可能在病毒传输中发挥重要作用。然后,结果表明,通过地板流失的气溶胶颗粒具有低效水密封(UFD)的泄漏风险主要存在于中性压力水平(NPL)上方的上层。此外,浴室的负压和正压力可以增强和降低相应UFD的气溶胶颗粒的暴露风险。增长Δt不会修改NPL的位置。此外,通过井水密封的地板排水管和/或在顶层上的罩处存在适当的负压,可以有效地避免气溶胶颗粒的暴露风险。最后,根据CFD结果,提供了对排水系统和人类活动的几种保护建议。

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