Aydin Mehmet, Evrendilek Fatih, Savas Seckin Aydin, Aydin Ismail Erkan, Evrendilek Deniz Eren
Emeritus, Department of Soil Science (Soil Physics), Mustafa Kemal University, Hatay, Turkey.
Department of Environmental Engineering, Bolu Abant Izzet Baysal University, Bolu, Turkey.
J Med Biol Eng. 2020;40(6):880-886. doi: 10.1007/s40846-020-00575-y. Epub 2020 Oct 19.
The purpose of this study is to quantify the motion dynamics of the severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2).
Three physical models of Newton's and Stokes's laws with(out) air resistance in the calm air are used to determine the falling time and velocity regimes of SARS-CoV-2 with(out) a respiratory water droplet of 1 to 2000 micrometers (µm) in diameter of an infected person of 0.5 to 2.6 m in height.
The horizontal distance travelled by SARS-CoV-2 in free fall from 1.7 m was 0.88 m due to breathing or talking and 2.94 m due to sneezing or coughing. According to Newton's laws of motion with air resistance, its falling velocity and time from 1.7 m were estimated at 3.95 × 10 m s and 43 s, respectively. Large droplets > 100 µm reached the ground from 1.7 m in less than 1.6 s, while the droplets ≥ 30 µm fell within 4.42 s regardless of the human height. Based on Stokes's law, the falling time of the droplets encapsulating SARS-CoV-2 ranged from 4.26 × 10 to 8.83 × 10 s as a function of the droplet size and height.
The spread dynamics of the COVID-19 pandemic is closely coupled to the falling dynamics of SARS-CoV-2 for which Newton's and Stokes's laws appeared to be applicable mostly to the respiratory droplet size ≥ 237.5 µm and ≤ 237.5 µm, respectively. An approach still remains to be desired so as to better quantify the motion of the nano-scale objects.
本研究的目的是量化严重急性呼吸综合征冠状病毒2(SARS-CoV-2)的运动动力学。
使用牛顿定律和斯托克斯定律的三种平静空气中有(无)空气阻力的物理模型,来确定身高0.5至2.6米的感染者直径为1至2000微米(µm)的有(无)呼吸水滴情况下SARS-CoV-2的下落时间和速度范围。
SARS-CoV-2从1.7米自由落体时,因呼吸或交谈水平移动距离为0.88米,因打喷嚏或咳嗽为2.94米。根据有空气阻力的牛顿运动定律,其从1.7米处的下落速度和时间分别估计为3.95×10米/秒和43秒。直径大于100µm的大水滴从1.7米处不到1.6秒到达地面,而直径≥30µm的水滴无论人体身高如何在4.42秒内落下。基于斯托克斯定律,包裹SARS-CoV-2的水滴下落时间根据水滴大小和高度在4.26×10至8.83×10秒范围内。
COVID-19大流行的传播动力学与SARS-CoV-2的下落动力学密切相关,其中牛顿定律和斯托克斯定律似乎分别主要适用于直径≥237.5µm和≤237.5µm的呼吸道飞沫大小。仍需要一种方法来更好地量化纳米级物体的运动。