Violent expiratory events, such as coughing and sneezing, are highly nontrivial examples of a two-phase mixture of liquid droplets dispersed into an unsteady turbulent airflow. Understanding the physical mechanisms determining the dispersion and evaporation process of respiratory droplets has recently become a priority given the global emergency caused by the SARS-CoV-2 infection. By means of high-resolution direct numerical simulations (DNSs) of the expiratory airflow and a comprehensive Lagrangian model for the droplet dynamics, we identify the key role of turbulence in the fate of exhaled droplets. Due to the considerable spread in the initial droplet size, we show that the droplet evaporation time is controlled by the combined effect of...
A Direct Numerical Simulation (DNS) study of ‘jet-like’ breathing event in a generic environment is ...
The precautionary measures recommended during the current COVID-19 pandemic do not consider the effe...
The coronavirus disease 2019 (COVID-19) outbreak has altered the lives of everyone on a global scale...
We use large eddy simulations to investigate the puff and droplet dynamics from violent expiratory e...
To quantify the fate of respiratory droplets under different ambient relative humidities, direct num...
In this paper we use simulation techniques to provide new insight into the effect ambient temperatur...
The global pandemic of COVID-19 has highlighted the importance of understanding the role that exhale...
In this paper, the statistical distributions of the position and the size of the evaporating droplet...
The spreading of the virus-containing droplets exhaled during respiratory events, e.g., cough, is an...
In majority of pandemics in human history, respiratory bio-aerosol is the most common route of trans...
The COVID-19 pandemic has strikingly demonstrated how important it is to develop fundamental knowled...
The ambient conditions surrounding liquid droplets determine their growth or shrinkage. However, the...
We formulate a model for the dynamics of respiratory droplets and use it to study their airborne lif...
For estimating the infection risk from virus-containing airborne droplets, it is crucial to consider...
State-of-the-art direct numerical simulations are exploited to study the role of barriers on the air...
A Direct Numerical Simulation (DNS) study of ‘jet-like’ breathing event in a generic environment is ...
The precautionary measures recommended during the current COVID-19 pandemic do not consider the effe...
The coronavirus disease 2019 (COVID-19) outbreak has altered the lives of everyone on a global scale...
We use large eddy simulations to investigate the puff and droplet dynamics from violent expiratory e...
To quantify the fate of respiratory droplets under different ambient relative humidities, direct num...
In this paper we use simulation techniques to provide new insight into the effect ambient temperatur...
The global pandemic of COVID-19 has highlighted the importance of understanding the role that exhale...
In this paper, the statistical distributions of the position and the size of the evaporating droplet...
The spreading of the virus-containing droplets exhaled during respiratory events, e.g., cough, is an...
In majority of pandemics in human history, respiratory bio-aerosol is the most common route of trans...
The COVID-19 pandemic has strikingly demonstrated how important it is to develop fundamental knowled...
The ambient conditions surrounding liquid droplets determine their growth or shrinkage. However, the...
We formulate a model for the dynamics of respiratory droplets and use it to study their airborne lif...
For estimating the infection risk from virus-containing airborne droplets, it is crucial to consider...
State-of-the-art direct numerical simulations are exploited to study the role of barriers on the air...
A Direct Numerical Simulation (DNS) study of ‘jet-like’ breathing event in a generic environment is ...
The precautionary measures recommended during the current COVID-19 pandemic do not consider the effe...
The coronavirus disease 2019 (COVID-19) outbreak has altered the lives of everyone on a global scale...