Kumar Sanjay, Lee Heow Pueh
Department of Mechanical Engineering, National University of Singapore, 9 Engineering Drive 1, Singapore 117575, Singapore.
Phys Fluids (1994). 2020 Nov 1;32(11):111301. doi: 10.1063/5.0029767.
In the unfortunate event of the current ongoing pandemic COVID-19, where vaccination development is still in the trial phase, several preventive control measures such as social distancing, hand-hygiene, and personal protective equipment have been recommended by health professionals and organizations. Among them, the safe wearing of facemasks has played a vital role in reducing the likelihood and severity of infectious respiratory disease transmission. The reported research in facemasks has covered many of their material types, fabrication techniques, mechanism characterization, and application aspects. However, in more recent times, the focus has shifted toward the theoretical investigations of fluid flow mechanisms involved in the virus-laden particles' prevention by using facemasks. This exciting research domain aims to address the complex fluid transport that led to designing a facemask with a better performance. This Review discusses the recent updates on fluid flow dynamics through the facemasks. Key design aspects such as thermal comfort and flow resistance are discussed. Furthermore, the recent progress in the investigations on the efficacy of facemasks for the prevention of COVID-19 spread and the impact of wearing facemasks is presented.
在当前正在发生的新冠疫情这一不幸事件中,疫苗研发仍处于试验阶段,卫生专业人员和组织推荐了一些预防控制措施,如社交距离、手部卫生和个人防护装备。其中,正确佩戴口罩在降低传染性呼吸道疾病传播的可能性和严重程度方面发挥了至关重要的作用。已报道的关于口罩的研究涵盖了其多种材料类型、制造技术、机理表征及应用方面。然而,最近,重点已转向通过使用口罩预防携带病毒颗粒所涉及的流体流动机制的理论研究。这一令人兴奋的研究领域旨在解决复杂的流体传输问题,从而设计出性能更佳的口罩。本综述讨论了通过口罩的流体流动动力学的最新进展。讨论了热舒适性和流动阻力等关键设计方面。此外,还介绍了口罩预防新冠病毒传播效果及佩戴口罩影响的研究最新进展。