Impact of human–human virus transmission in an air-conditioned room with proper ventilation system

As we are probably aware of certain infectious diseases that transmit from body to body because of perspiration or respiration of air from a human being containing strains of the infection, the goal of this investigation is to see how the infection is getting spread from a human residing in a closed...

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Veröffentlicht in:International journal for simulation and multidisciplinary design optimization 2022, Vol.13, p.22
Hauptverfasser: Manas, Chalumuru, Narasimha Raju, Pusapati Laxmi, Bharat Kumar, Kethavarapu Naga, Rajan, Harish
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Sprache:eng
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Zusammenfassung:As we are probably aware of certain infectious diseases that transmit from body to body because of perspiration or respiration of air from a human being containing strains of the infection, the goal of this investigation is to see how the infection is getting spread from a human residing in a closed area provided with air conditioner and with an appropriate ventilation framework that need to be involved to diminish infection dissemination in this enclosed area. Considering the present COVID-19 situation, it is important to discover the effect of infection spread to an individual contagion source. An appropriate CFD-model giving analysis of infection transmission from individual to individual in an air-conditioned room would give results to understand such situations. Likewise, this examination would help in determining the velocity, temperature, and particle contours in a characterized walled area. Besides, we have displayed various nooks utilizing different ventilation frameworks to discover which framework would give better outcomes to decrease infection transmission. Our investigation would provide how varying flow rates in a room at an outlet could be effective in reducing virus dissemination, as this model could be applied to cafes, cinemas, inns, and above all emergency clinics where individuals remain in an enclosed air-conditioned room.
ISSN:1779-6288
1779-6288
DOI:10.1051/smdo/2022013