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Numerical study of the transport of droplets or particles generated by respiratory system indoors

机译:室内呼吸系统产生的液滴或颗粒传输的数值研究

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摘要

The outbreak of atypical pneumonia, referred to as severe acute respiratory syndrome (SARS), has spread to many countries in the world. SARS may infect human bodies by the tiny droplets or particles carrying various virus and bacteria, which are generated by the respiratory system of infected patients. This paper presents the numerical analysis of the influence of generating ways of the droplets or particles on the transport and distribution of the droplets or particles indoors. The drift flux model, which considers the settling of particles or droplets under the effect of gravitational sedimentation, is adopted to simulate the droplets transport and distribution indoors during respiration and sneezing or coughing process, while the simplified model for solving the continuous fluid flow is combined. Two different cases considering the normal respiration and coughing or sneezing are studied, respectively, and two different outlet velocities from the mouth for the sneezing or coughing process are considered. The results show that droplets or particles generated by normal breathing process transport a relatively short distance, while droplets or particles generated during coughing or sneezing may travel much longer distances, which may pose adverse effect on human bodies for defending the SARS or other infectious diseases.
机译:非典型肺炎的爆发,被称为严重急性呼吸系统综合症(SARS),已经蔓延到世界上许多国家。 SARS可能通过携带各种病毒和细菌的微小液滴或微粒感染人体,这些病毒和细菌是由受感染患者的呼吸系统产生的。本文提出了液滴或颗粒的产生方式对液滴或颗粒在室内传输和分布的影响的数值分析。采用漂移通量模型,该模型考虑了重力沉降作用下颗粒或小滴的沉降,模拟了呼吸,打喷嚏或咳嗽过程中小滴在室内的迁移和分布,同时结合了用于解决连续流体流动的简化模型。 。分别研究了两种考虑正常呼吸和咳嗽或打喷嚏的情况,并考虑了两种不同的打喷嚏或咳嗽过程中口腔的出口速度。结果表明,正常呼吸过程中产生的液滴或颗粒运输的距离相对较短,而在咳嗽或打喷嚏过程中产生的液滴或颗粒的传播距离可能更长,这可能会对人体防御SARS或其他传染病造成不利影响。

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