Arumuru Venugopal, Pasa Jangyadatta, Samantaray Sidhartha Sankar
Applied Fluids Group, School of Mechanical Sciences, Indian Institute of Technology Bhubaneswar, Bhubaneswar 752050, India.
Phys Fluids (1994). 2020 Nov 1;32(11):115129. doi: 10.1063/5.0030101.
In the present work, we propose and demonstrate a simple experimental visualization to simulate sneezing by maintaining dynamic similarity to actual sneezing. A pulsed jet with Reynolds number Re = 30 000 is created using compressed air and a solenoid valve. Tracer particles are introduced in the flow to capture the emulated turbulent jet formed due to a sneeze. The visualization is accomplished using a camera and laser illumination. It is observed that a typical sneeze can travel up to 25 ft in ∼22 s in a quiescent environment. This highlights that the present widely accepted safe distance of 6 ft is highly underestimated, especially under the act of a sneeze. Our study demonstrates that a three-layer homemade mask is just adequate to impede the penetration of fine-sized particles, which may cause the spreading of the infectious pathogen responsible for COVID-19. However, a surgical mask cannot block the sneeze, and the sneeze particle can travel up to 2.5 ft. We strongly recommend using at least a three-layer homemade mask with a social distancing of 6 ft to combat the transmission of COVID-19 virus. In offices, we recommend the use of face masks and shields to prevent the spreading of droplets carrying the infectious pathogen. Interestingly, an N-95 mask blocks the sneeze in the forward direction; however, the leakage from the sides and top spreads the sneeze in the backward direction up to 2 ft. We strongly recommend using the elbow or hands to prevent droplet leakage even after wearing a mask during sneezing and coughing.
在本研究中,我们提出并展示了一种简单的实验可视化方法,通过保持与实际打喷嚏的动态相似性来模拟打喷嚏。使用压缩空气和电磁阀产生雷诺数Re = 30000的脉冲射流。在气流中引入示踪粒子,以捕捉因打喷嚏形成的模拟湍流射流。可视化通过相机和激光照明完成。观察到在静态环境中,一次典型的喷嚏在约22秒内可传播至25英尺。这突出表明,目前广泛接受的6英尺安全距离被严重低估,尤其是在打喷嚏时。我们的研究表明,三层自制口罩足以阻止细颗粒的穿透,这些细颗粒可能会导致负责新冠病毒传播的传染性病原体扩散。然而,外科口罩无法阻挡喷嚏,喷嚏颗粒可传播至2.5英尺。我们强烈建议使用至少三层的自制口罩,并保持6英尺的社交距离,以对抗新冠病毒的传播。在办公室,我们建议使用口罩和面罩,以防止携带传染性病原体的飞沫传播。有趣的是,N95口罩可阻挡向前的喷嚏;然而,从侧面和顶部的泄漏会使喷嚏向后传播至2英尺。我们强烈建议即使在打喷嚏和咳嗽时戴了口罩,也要用肘部或手来防止飞沫泄漏。