The education sector has suffered a catastrophic setback due to ongoing COVID-pandemic, with classrooms being closed indefinitely. The current study aims to solve the existing dilemma by examining COVID transmission inside a classroom and providing long-term sustainable solutions. In this work, a standard 5m x 3m x 5m classroom is considered where 24 students are seated, accompanied by a teacher. A computational fluid dynamics simulation based on OpenFOAM is performed using a Eulerian-Lagrangian framework. Based on the stochastic dose response framework, we have evaluated the infection risk in the classroom for two distinct cases: (i) certain students are infected (ii) the teacher is infected. If the teacher is infected, the probability of infection could reach 100% for certain students. When certain students are infected, the maximum infection risk for a susceptible person reaches 30%. The commonly used cloth mask proves to be ineffective in providing protection against infection transmission reducing the maximum infection probability by approximately 26% only. Another commonly used solution in the form of shields installed on desks have also failed to provide adequate protection against infection reducing the infection risk only by 50%. Furthermore, the shields serves as a source of fomite mode of infection. Screens suspended from the ceiling, which entrap droplets, have been proposed as a novel solution that reduces the infection risk by 90% and 95% compared to the no screen scenario besides being completely devoid of fomite infection mode. As a result of the screens, the class-time can be extended by 55 minutes.
翻译:由于COVID的广度,教室被无限期关闭,教育部门遭受了灾难性的挫折。当前研究的目的是通过检查COVID在教室内的传播并提供长期可持续的解决办法来解决目前的困境。在这项工作中,一个标准5m x 3m x 5m 5m 教室在24名学生的座位上,由一名教师陪同进行。基于OpenFOAM的计算流体动态模拟以Eulelian-Lagrangian框架进行,以Eulearian-Lagrangian框架为基础进行。根据随机剂量反应框架,我们评估了教室中两种不同病例的感染风险:(一) 某些学生被感染了(二) 教师被感染。如果教师被感染,某些学生的感染概率可能达到100%。当某些学生被感染时,受影响的人的最大感染风险将达到30%。通常使用的布面遮罩在提供防止感染传播的防护方面是无效的,仅减少26 %的感染概率。在办公桌上安装的另一种常用的防护剂形式也未能提供充分的防止感染风险减少50 % 。此外,将屏蔽屏障作为升级的升级模式,作为升级的免感染的一种模式,因此可降低了50 % 。