Dispersion scenarios for pollution release in an occupied underground station – a numerical study with a micro-scale and a multi-agent model

The release of hazardous material in a subway station is a dangerous situation for passengers and staff. To achieve an acceptable level of risk, a correct marking of emergency exits and escape routes is essential., For this purpose, underground air dispersion, which depends on source characteristics...

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Main Author: Günter Gross
Format: Article
Language:English
Published: Borntraeger 2015-08-01
Series:Meteorologische Zeitschrift
Subjects:
Online Access:http://dx.doi.org/10.1127/metz/2015/0680
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spelling doaj-dce8f8dec9234622be788233c25a0f462020-11-24T21:06:42ZengBorntraegerMeteorologische Zeitschrift0941-29482015-08-0124551152410.1127/metz/2015/068085018Dispersion scenarios for pollution release in an occupied underground station – a numerical study with a micro-scale and a multi-agent modelGünter GrossThe release of hazardous material in a subway station is a dangerous situation for passengers and staff. To achieve an acceptable level of risk, a correct marking of emergency exits and escape routes is essential., For this purpose, underground air dispersion, which depends on source characteristics, the construction layout of the station, and meteorological conditions, must be known. In this paper a micro-scale wind model is combined with a dispersion model to calculate the spread of pollutants underground as well as aboveground for specific scenarios. In particular, the effect of emission temperature on the contamination of the subway facilities was studied. Completely different spots with high concentrations have been calculated for hot and cold sources. Depending on the scenario, an escape route is not always safe, underlining the need for a situation-related adaptive marking system. Further information on the optimisation of a safe way out is provided by the results of an agent-based simulation model. Depending on the number and on the individual characteristics of the agents, the contamination level can be estimated, which could help in the prioritisation process between alternative escape routes.http://dx.doi.org/10.1127/metz/2015/0680Micro-scale simulationagent-based modeldispersionsubway
collection DOAJ
language English
format Article
sources DOAJ
author Günter Gross
spellingShingle Günter Gross
Dispersion scenarios for pollution release in an occupied underground station – a numerical study with a micro-scale and a multi-agent model
Meteorologische Zeitschrift
Micro-scale simulation
agent-based model
dispersion
subway
author_facet Günter Gross
author_sort Günter Gross
title Dispersion scenarios for pollution release in an occupied underground station – a numerical study with a micro-scale and a multi-agent model
title_short Dispersion scenarios for pollution release in an occupied underground station – a numerical study with a micro-scale and a multi-agent model
title_full Dispersion scenarios for pollution release in an occupied underground station – a numerical study with a micro-scale and a multi-agent model
title_fullStr Dispersion scenarios for pollution release in an occupied underground station – a numerical study with a micro-scale and a multi-agent model
title_full_unstemmed Dispersion scenarios for pollution release in an occupied underground station – a numerical study with a micro-scale and a multi-agent model
title_sort dispersion scenarios for pollution release in an occupied underground station – a numerical study with a micro-scale and a multi-agent model
publisher Borntraeger
series Meteorologische Zeitschrift
issn 0941-2948
publishDate 2015-08-01
description The release of hazardous material in a subway station is a dangerous situation for passengers and staff. To achieve an acceptable level of risk, a correct marking of emergency exits and escape routes is essential., For this purpose, underground air dispersion, which depends on source characteristics, the construction layout of the station, and meteorological conditions, must be known. In this paper a micro-scale wind model is combined with a dispersion model to calculate the spread of pollutants underground as well as aboveground for specific scenarios. In particular, the effect of emission temperature on the contamination of the subway facilities was studied. Completely different spots with high concentrations have been calculated for hot and cold sources. Depending on the scenario, an escape route is not always safe, underlining the need for a situation-related adaptive marking system. Further information on the optimisation of a safe way out is provided by the results of an agent-based simulation model. Depending on the number and on the individual characteristics of the agents, the contamination level can be estimated, which could help in the prioritisation process between alternative escape routes.
topic Micro-scale simulation
agent-based model
dispersion
subway
url http://dx.doi.org/10.1127/metz/2015/0680
work_keys_str_mv AT guntergross dispersionscenariosforpollutionreleaseinanoccupiedundergroundstationanumericalstudywithamicroscaleandamultiagentmodel
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