Comparative study on numerical simulation based on CALPUFF and wind tunnel simulation of hazardous chemical leakage accidents

CALPUFF, as a Lagrangian puff modeling system, is mostly used in the field of atmospheric environment research and risk assessment. CALPUFF performs well for short-term and short-range release scenarios over complex terrain, as well as long-term and long-range transportation. Therefore, this article...

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Main Authors: Rongqian Zhang, Mei Li, Hancong Ma
Format: Article
Language:English
Published: Frontiers Media S.A. 2022-11-01
Series:Frontiers in Environmental Science
Subjects:
Online Access:https://www.frontiersin.org/articles/10.3389/fenvs.2022.1025027/full
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author Rongqian Zhang
Mei Li
Hancong Ma
author_facet Rongqian Zhang
Mei Li
Hancong Ma
author_sort Rongqian Zhang
collection DOAJ
description CALPUFF, as a Lagrangian puff modeling system, is mostly used in the field of atmospheric environment research and risk assessment. CALPUFF performs well for short-term and short-range release scenarios over complex terrain, as well as long-term and long-range transportation. Therefore, this article uses the CALPUFF model to simulate a toxic gas leakage accident in a hazardous chemical plant in an urban area, focusing on the influence of local buildings. Wind tunnel experiments are performed in accordance with the CALPUFF experiments to assess the model’s accuracy in cases of chemical leakage accidents. The results of the wind tunnel experiment are superimposed on the map of CALPUFF calculation, and the quantitative analysis is also performed. The comparative results show that the simulation results of the CALPUFF are mainly affected by factors such as wind direction, wind speed, and the complexity of the surface environment. With less influence of buildings, such as the south and north wind, the CALPUFF simulation is consistent with the wind tunnel experiment, having a correlation coefficient of over 0.7 in most cases, while under the east wind, the consistency is significantly lower due to the influence of buildings. In addition, it is found that the wind tunnel experiment is more accurate in the near field of the pollution source, while CALPUFF is more suitable for simulating the overall trend of gas dispersion. The comparison and evaluation of the capabilities of different methods on gas dispersion simulation are helpful in guiding the emergency response during hazardous chemical leakage accidents.
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spelling doaj.art-7a4b18e8c5964d5caf5623aa5fb71e732022-12-22T03:39:20ZengFrontiers Media S.A.Frontiers in Environmental Science2296-665X2022-11-011010.3389/fenvs.2022.10250271025027Comparative study on numerical simulation based on CALPUFF and wind tunnel simulation of hazardous chemical leakage accidentsRongqian ZhangMei LiHancong MaCALPUFF, as a Lagrangian puff modeling system, is mostly used in the field of atmospheric environment research and risk assessment. CALPUFF performs well for short-term and short-range release scenarios over complex terrain, as well as long-term and long-range transportation. Therefore, this article uses the CALPUFF model to simulate a toxic gas leakage accident in a hazardous chemical plant in an urban area, focusing on the influence of local buildings. Wind tunnel experiments are performed in accordance with the CALPUFF experiments to assess the model’s accuracy in cases of chemical leakage accidents. The results of the wind tunnel experiment are superimposed on the map of CALPUFF calculation, and the quantitative analysis is also performed. The comparative results show that the simulation results of the CALPUFF are mainly affected by factors such as wind direction, wind speed, and the complexity of the surface environment. With less influence of buildings, such as the south and north wind, the CALPUFF simulation is consistent with the wind tunnel experiment, having a correlation coefficient of over 0.7 in most cases, while under the east wind, the consistency is significantly lower due to the influence of buildings. In addition, it is found that the wind tunnel experiment is more accurate in the near field of the pollution source, while CALPUFF is more suitable for simulating the overall trend of gas dispersion. The comparison and evaluation of the capabilities of different methods on gas dispersion simulation are helpful in guiding the emergency response during hazardous chemical leakage accidents.https://www.frontiersin.org/articles/10.3389/fenvs.2022.1025027/fullhazardous chemical leakage accidentgas dispersion modelCALPUFFwind tunnel data validationbuilding downwash
spellingShingle Rongqian Zhang
Mei Li
Hancong Ma
Comparative study on numerical simulation based on CALPUFF and wind tunnel simulation of hazardous chemical leakage accidents
Frontiers in Environmental Science
hazardous chemical leakage accident
gas dispersion model
CALPUFF
wind tunnel data validation
building downwash
title Comparative study on numerical simulation based on CALPUFF and wind tunnel simulation of hazardous chemical leakage accidents
title_full Comparative study on numerical simulation based on CALPUFF and wind tunnel simulation of hazardous chemical leakage accidents
title_fullStr Comparative study on numerical simulation based on CALPUFF and wind tunnel simulation of hazardous chemical leakage accidents
title_full_unstemmed Comparative study on numerical simulation based on CALPUFF and wind tunnel simulation of hazardous chemical leakage accidents
title_short Comparative study on numerical simulation based on CALPUFF and wind tunnel simulation of hazardous chemical leakage accidents
title_sort comparative study on numerical simulation based on calpuff and wind tunnel simulation of hazardous chemical leakage accidents
topic hazardous chemical leakage accident
gas dispersion model
CALPUFF
wind tunnel data validation
building downwash
url https://www.frontiersin.org/articles/10.3389/fenvs.2022.1025027/full
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AT hancongma comparativestudyonnumericalsimulationbasedoncalpuffandwindtunnelsimulationofhazardouschemicalleakageaccidents