Japan supercomputer shows humidity affects aerosol spread of coronavirus

Japan supercomputer shows humidity affects aerosol spread of coronavirus
A man walks next to graffiti depicting a cleaner in protective gear spraying viruses with the face of Brazil's President Jair Bolsonaro, amid the coronavirus disease (Covid-19) outbreak, in Rio de Janeiro, Brazil, October 7, 2020.
PHOTO: Reuters

TOKYO - A Japanese supercomputer showed that humidity can have a large effect on the dispersion of virus particles, pointing to heightened coronavirus contagion risks in dry, indoor conditions during the winter months.

The finding suggests that the use of humidifiers may help limit infections during times when window ventilation is not possible, according to a study released on Tuesday by research giant Riken and Kobe University.

The researchers used the Fugaku supercomputer to model the emission and flow of virus-like particles from infected people in a variety of indoor environments.

Air humidity of lower than 30 per cent resulted in more than double the amount of aerosolised particles compared to levels of 60 per cent or higher, the simulations showed.

The study also indicated that clear face shields are not as effective as masks in preventing the spread of aerosols.

Other findings showed that diners are more at risk from people to their side compared to across the table, and the number of singers in choruses should be limited and spaced out.

The research team led by Makoto Tsubokura has previously used the Fugaku supercomputer to model contagion conditions in trains, work spaces, and class rooms.

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