Simulating Flow and Hazardous Gas Dispersion by Using WRF–CFD Coupled Model under Different Atmospheric Stability Conditions

In this paper, the Weather Research and Forecasting (WRF) model is coupled with the computational fluid dynamics (CFD) model to study the diffusion model of the accidental leakage of hazardous gas under different atmospheric stability conditions. First, the field test at Nanjing University was used...

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Main Authors: Hongxuan Zhou, Weiwei Song, Kaitao Xiao
Format: Article
Language:English
Published: MDPI AG 2022-07-01
Series:Atmosphere
Subjects:
Online Access:https://www.mdpi.com/2073-4433/13/7/1072
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author Hongxuan Zhou
Weiwei Song
Kaitao Xiao
author_facet Hongxuan Zhou
Weiwei Song
Kaitao Xiao
author_sort Hongxuan Zhou
collection DOAJ
description In this paper, the Weather Research and Forecasting (WRF) model is coupled with the computational fluid dynamics (CFD) model to study the diffusion model of the accidental leakage of hazardous gas under different atmospheric stability conditions. First, the field test at Nanjing University was used to validate the different turbulence models of CFD. The experimental data confirm that the realizable k-ε model can describe the behavior of hazardous gas diffusion. On this basis, the diffusion process of the accidental release of tracer gas under different atmospheric stability conditions is simulated. The results show that atmospheric stability has a significant effect on the flow field distribution and the area of plume of hazardous substances. The ambient wind deflects under unstable conditions and vertical turbulence is slightly larger than that under neutral and stable conditions. Under stable conditions, the dilution of harmful gases is suppressed due to weak turbulent mixing. In addition, stable atmospheric conditions can increase near-surface gas concentrations.
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spelling doaj.art-f4f18479699c43228e726588e8ae27742023-12-03T14:38:38ZengMDPI AGAtmosphere2073-44332022-07-01137107210.3390/atmos13071072Simulating Flow and Hazardous Gas Dispersion by Using WRF–CFD Coupled Model under Different Atmospheric Stability ConditionsHongxuan Zhou0Weiwei Song1Kaitao Xiao2State Key Laboratory of NBC Protection for Civilian, Beijing 102205, ChinaState Key Laboratory of NBC Protection for Civilian, Beijing 102205, ChinaState Key Laboratory of NBC Protection for Civilian, Beijing 102205, ChinaIn this paper, the Weather Research and Forecasting (WRF) model is coupled with the computational fluid dynamics (CFD) model to study the diffusion model of the accidental leakage of hazardous gas under different atmospheric stability conditions. First, the field test at Nanjing University was used to validate the different turbulence models of CFD. The experimental data confirm that the realizable k-ε model can describe the behavior of hazardous gas diffusion. On this basis, the diffusion process of the accidental release of tracer gas under different atmospheric stability conditions is simulated. The results show that atmospheric stability has a significant effect on the flow field distribution and the area of plume of hazardous substances. The ambient wind deflects under unstable conditions and vertical turbulence is slightly larger than that under neutral and stable conditions. Under stable conditions, the dilution of harmful gases is suppressed due to weak turbulent mixing. In addition, stable atmospheric conditions can increase near-surface gas concentrations.https://www.mdpi.com/2073-4433/13/7/1072WRF modelCFD modeldispersionatmospheric stabilityurban area
spellingShingle Hongxuan Zhou
Weiwei Song
Kaitao Xiao
Simulating Flow and Hazardous Gas Dispersion by Using WRF–CFD Coupled Model under Different Atmospheric Stability Conditions
Atmosphere
WRF model
CFD model
dispersion
atmospheric stability
urban area
title Simulating Flow and Hazardous Gas Dispersion by Using WRF–CFD Coupled Model under Different Atmospheric Stability Conditions
title_full Simulating Flow and Hazardous Gas Dispersion by Using WRF–CFD Coupled Model under Different Atmospheric Stability Conditions
title_fullStr Simulating Flow and Hazardous Gas Dispersion by Using WRF–CFD Coupled Model under Different Atmospheric Stability Conditions
title_full_unstemmed Simulating Flow and Hazardous Gas Dispersion by Using WRF–CFD Coupled Model under Different Atmospheric Stability Conditions
title_short Simulating Flow and Hazardous Gas Dispersion by Using WRF–CFD Coupled Model under Different Atmospheric Stability Conditions
title_sort simulating flow and hazardous gas dispersion by using wrf cfd coupled model under different atmospheric stability conditions
topic WRF model
CFD model
dispersion
atmospheric stability
urban area
url https://www.mdpi.com/2073-4433/13/7/1072
work_keys_str_mv AT hongxuanzhou simulatingflowandhazardousgasdispersionbyusingwrfcfdcoupledmodelunderdifferentatmosphericstabilityconditions
AT weiweisong simulatingflowandhazardousgasdispersionbyusingwrfcfdcoupledmodelunderdifferentatmosphericstabilityconditions
AT kaitaoxiao simulatingflowandhazardousgasdispersionbyusingwrfcfdcoupledmodelunderdifferentatmosphericstabilityconditions