首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >CFD SIMULATION OF HUMAN COUGHS AND SNEEZES: A STUDY IN DROPLET DISPERSION, HEAT, AND MASS TRANSFERN ^Amir A. AliabadiDepartment of Mechanical Engineering University of British Columbia Vancouver, British Columbia V6T 1Z3, CanadaMliabadi@interchange.ubc.ca
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CFD SIMULATION OF HUMAN COUGHS AND SNEEZES: A STUDY IN DROPLET DISPERSION, HEAT, AND MASS TRANSFERN ^Amir A. AliabadiDepartment of Mechanical Engineering University of British Columbia Vancouver, British Columbia V6T 1Z3, CanadaMliabadi@interchange.ubc.ca

机译:人工咳嗽和打喷嚏的CFD仿真:液滴分散,热量和大规模转移的研究^ Amir A. Aliabadi 不列颠哥伦比亚省温哥华机械工程大学,不列颠哥伦比亚省V6T 1Z3,Canadam Aliabadi@InterChange.ubc。加利福尼亚州

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A Computational Fluid Dynamics simulation of near-field cough and sneeze droplet dispersion and heat and mass transfer is developed. In this study various sources of variability in cough and sneeze processes are considered. These are variations in injection volume (0.5/, 2.5/, and 5.0/) and ambient relative humidity (20%, 40% and 60%). There are a total of 9 simulations for coughs and sneezes in a quiescent background. A large ensemble (5000) of droplets are tracked with diameters in the range l-500micro/2. Evaporation and dispersion are predicted as a function of droplet size. Generally, fine droplets evaporate faster than large droplets. Higher relative humidities slow the evaporation process. Larger droplets have greater axial penetration. They also exhibit greater vertical drop due to the effect of gravity. Sideway penetration is increased by higher injection volumes. The buoyancy effect due to thermal energy of the injection is very weak, at least for the 10-second computation duration.
机译:开发了一种近场咳嗽和喷嚏液滴分散和热量和传质模拟的计算流体动力学模拟。在这项研究中,考虑了各种咳嗽和喷嚏过程的可变性来源。这些是注射体积(0.5 /,2.5 /,5.0 /)和环境相对湿度(20%,40%和60%)的变化。在静止背景中咳嗽和打喷嚏共有9种模拟。 L-500micro / 2范围内的直径跟踪大型液滴(5000)液滴。预测蒸发和分散作为液滴尺寸的函数。通常,细液滴比大液滴更快地蒸发。更高的相对湿度减缓蒸发过程。较大的液滴具有更大的轴向渗透。由于重力的效果,它们也表现出更大的垂直下降。通过更高的注射体积增加横向渗透。由于喷射的热能引起的浮力效果非常弱,至少用于10秒的计算持续时间。

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