Application of the FTA and ETA Method for Gas Hazard Identification for the Performance of Safety Systems in the Industrial Department

The paper analyzes the conditions of safe use of industrial gas systems and factors influencing gas hazards. Typical gas installation and its basic features have been characterized. The results of gas threat analysis in an industrial enterprise using FTA error tree method and ETA event tree method a...

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Main Author: Ignac-Nowicka Jolanta
Format: Article
Language:English
Published: Sciendo 2018-03-01
Series:Management Systems in Production Engineering
Subjects:
Online Access:https://doi.org/10.2478/mspe-2018-0003
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author Ignac-Nowicka Jolanta
author_facet Ignac-Nowicka Jolanta
author_sort Ignac-Nowicka Jolanta
collection DOAJ
description The paper analyzes the conditions of safe use of industrial gas systems and factors influencing gas hazards. Typical gas installation and its basic features have been characterized. The results of gas threat analysis in an industrial enterprise using FTA error tree method and ETA event tree method are presented. Compares selected methods of identifying hazards gas industry with respect to the scope of their use. The paper presents an analysis of two exemplary hazards: an industrial gas catastrophe (FTA) and an explosive gas explosion (ETA). In both cases, technical risks and human errors (human factor) were taken into account. The cause-effect relationships of hazards and their causes are presented in the form of diagrams in the drawings.
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spelling doaj.art-66d6dd5c3f0e4440bd45bc6e53c8fe372022-12-22T02:07:13ZengSciendoManagement Systems in Production Engineering2450-57812018-03-01261232610.2478/mspe-2018-0003Application of the FTA and ETA Method for Gas Hazard Identification for the Performance of Safety Systems in the Industrial DepartmentIgnac-Nowicka Jolanta0Silesian University of TechnologyThe paper analyzes the conditions of safe use of industrial gas systems and factors influencing gas hazards. Typical gas installation and its basic features have been characterized. The results of gas threat analysis in an industrial enterprise using FTA error tree method and ETA event tree method are presented. Compares selected methods of identifying hazards gas industry with respect to the scope of their use. The paper presents an analysis of two exemplary hazards: an industrial gas catastrophe (FTA) and an explosive gas explosion (ETA). In both cases, technical risks and human errors (human factor) were taken into account. The cause-effect relationships of hazards and their causes are presented in the form of diagrams in the drawings.https://doi.org/10.2478/mspe-2018-0003gas hazardindustrial gas installationhazard analysisfta methodeta methodhuman factor
spellingShingle Ignac-Nowicka Jolanta
Application of the FTA and ETA Method for Gas Hazard Identification for the Performance of Safety Systems in the Industrial Department
Management Systems in Production Engineering
gas hazard
industrial gas installation
hazard analysis
fta method
eta method
human factor
title Application of the FTA and ETA Method for Gas Hazard Identification for the Performance of Safety Systems in the Industrial Department
title_full Application of the FTA and ETA Method for Gas Hazard Identification for the Performance of Safety Systems in the Industrial Department
title_fullStr Application of the FTA and ETA Method for Gas Hazard Identification for the Performance of Safety Systems in the Industrial Department
title_full_unstemmed Application of the FTA and ETA Method for Gas Hazard Identification for the Performance of Safety Systems in the Industrial Department
title_short Application of the FTA and ETA Method for Gas Hazard Identification for the Performance of Safety Systems in the Industrial Department
title_sort application of the fta and eta method for gas hazard identification for the performance of safety systems in the industrial department
topic gas hazard
industrial gas installation
hazard analysis
fta method
eta method
human factor
url https://doi.org/10.2478/mspe-2018-0003
work_keys_str_mv AT ignacnowickajolanta applicationoftheftaandetamethodforgashazardidentificationfortheperformanceofsafetysystemsintheindustrialdepartment