Identifying the Weaker Function Links in the Hazardous Chemicals Road Transportation System in China
Safety of the hazardous chemicals road transportation system (HCRTS) is an important, complex, social, and environmental sensitive problem. The complexity, dynamics, and multi-link features of HCRTS have made it necessary to think beyond traditional risk analysis methods. Based on the relevant liter...
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doaj-c7cefd680c634011a0cc1dd626346ed32021-07-15T15:35:32ZengMDPI AGInternational Journal of Environmental Research and Public Health1661-78271660-46012021-07-01187039703910.3390/ijerph18137039Identifying the Weaker Function Links in the Hazardous Chemicals Road Transportation System in ChinaLaihao Ma0Xiaoxue Ma1Jingwen Zhang2Qing Yang3Kai Wei4Marine Engineering College, Dalian Maritime University, Dalian 116026, ChinaPublic Administration and Humanities College, Dalian Maritime University, Dalian 116026, ChinaPublic Administration and Humanities College, Dalian Maritime University, Dalian 116026, ChinaPublic Administration and Humanities College, Dalian Maritime University, Dalian 116026, ChinaPublic Administration and Humanities College, Dalian Maritime University, Dalian 116026, ChinaSafety of the hazardous chemicals road transportation system (HCRTS) is an important, complex, social, and environmental sensitive problem. The complexity, dynamics, and multi-link features of HCRTS have made it necessary to think beyond traditional risk analysis methods. Based on the relevant literature, Functional Resonance Analysis Method (FRAM) is a relatively new systemic method for modeling and analyzing complex socio-technical systems. In this study, a methodology that integrates FRAM, fuzzy sets, and risk matrix is presented to quantitatively assess the risks factors representing failure function links in HCRTS. As the strength of function links can be illustrated by the RI (risk index) of risk factors identified in failure function links, 32 risk factors representing 12 failure function links were first identified by accident causes analysis and the framework of FRAM. Fuzzy sets were then utilized to calculate the weight of the likelihood and consequence of the risk factors. Finally, according to the assessment results of the identified risk factors by a two-dimensional risk matrix, the weaker function links in the whole HCRTS chain were identified. HCs road companies, regulatory authorities, relevant practitioners, and other stakeholders should pay more attention to these links.https://www.mdpi.com/1660-4601/18/13/7039hazardous chemicalshazardous chemicals road transportation systemrisk analysisFRAM |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Laihao Ma Xiaoxue Ma Jingwen Zhang Qing Yang Kai Wei |
spellingShingle |
Laihao Ma Xiaoxue Ma Jingwen Zhang Qing Yang Kai Wei Identifying the Weaker Function Links in the Hazardous Chemicals Road Transportation System in China International Journal of Environmental Research and Public Health hazardous chemicals hazardous chemicals road transportation system risk analysis FRAM |
author_facet |
Laihao Ma Xiaoxue Ma Jingwen Zhang Qing Yang Kai Wei |
author_sort |
Laihao Ma |
title |
Identifying the Weaker Function Links in the Hazardous Chemicals Road Transportation System in China |
title_short |
Identifying the Weaker Function Links in the Hazardous Chemicals Road Transportation System in China |
title_full |
Identifying the Weaker Function Links in the Hazardous Chemicals Road Transportation System in China |
title_fullStr |
Identifying the Weaker Function Links in the Hazardous Chemicals Road Transportation System in China |
title_full_unstemmed |
Identifying the Weaker Function Links in the Hazardous Chemicals Road Transportation System in China |
title_sort |
identifying the weaker function links in the hazardous chemicals road transportation system in china |
publisher |
MDPI AG |
series |
International Journal of Environmental Research and Public Health |
issn |
1661-7827 1660-4601 |
publishDate |
2021-07-01 |
description |
Safety of the hazardous chemicals road transportation system (HCRTS) is an important, complex, social, and environmental sensitive problem. The complexity, dynamics, and multi-link features of HCRTS have made it necessary to think beyond traditional risk analysis methods. Based on the relevant literature, Functional Resonance Analysis Method (FRAM) is a relatively new systemic method for modeling and analyzing complex socio-technical systems. In this study, a methodology that integrates FRAM, fuzzy sets, and risk matrix is presented to quantitatively assess the risks factors representing failure function links in HCRTS. As the strength of function links can be illustrated by the RI (risk index) of risk factors identified in failure function links, 32 risk factors representing 12 failure function links were first identified by accident causes analysis and the framework of FRAM. Fuzzy sets were then utilized to calculate the weight of the likelihood and consequence of the risk factors. Finally, according to the assessment results of the identified risk factors by a two-dimensional risk matrix, the weaker function links in the whole HCRTS chain were identified. HCs road companies, regulatory authorities, relevant practitioners, and other stakeholders should pay more attention to these links. |
topic |
hazardous chemicals hazardous chemicals road transportation system risk analysis FRAM |
url |
https://www.mdpi.com/1660-4601/18/13/7039 |
work_keys_str_mv |
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1721299490877472768 |